linux/drivers/usb/misc/ftdi-elan.c
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   1// SPDX-License-Identifier: GPL-2.0
   2/*
   3 * USB FTDI client driver for Elan Digital Systems's Uxxx adapters
   4 *
   5 * Copyright(C) 2006 Elan Digital Systems Limited
   6 * http://www.elandigitalsystems.com
   7 *
   8 * Author and Maintainer - Tony Olech - Elan Digital Systems
   9 * tony.olech@elandigitalsystems.com
  10 *
  11 * This driver was written by Tony Olech(tony.olech@elandigitalsystems.com)
  12 * based on various USB client drivers in the 2.6.15 linux kernel
  13 * with constant reference to the 3rd Edition of Linux Device Drivers
  14 * published by O'Reilly
  15 *
  16 * The U132 adapter is a USB to CardBus adapter specifically designed
  17 * for PC cards that contain an OHCI host controller. Typical PC cards
  18 * are the Orange Mobile 3G Option GlobeTrotter Fusion card.
  19 *
  20 * The U132 adapter will *NOT *work with PC cards that do not contain
  21 * an OHCI controller. A simple way to test whether a PC card has an
  22 * OHCI controller as an interface is to insert the PC card directly
  23 * into a laptop(or desktop) with a CardBus slot and if "lspci" shows
  24 * a new USB controller and "lsusb -v" shows a new OHCI Host Controller
  25 * then there is a good chance that the U132 adapter will support the
  26 * PC card.(you also need the specific client driver for the PC card)
  27 *
  28 * Please inform the Author and Maintainer about any PC cards that
  29 * contain OHCI Host Controller and work when directly connected to
  30 * an embedded CardBus slot but do not work when they are connected
  31 * via an ELAN U132 adapter.
  32 *
  33 */
  34
  35#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  36
  37#include <linux/kernel.h>
  38#include <linux/errno.h>
  39#include <linux/init.h>
  40#include <linux/list.h>
  41#include <linux/ioctl.h>
  42#include <linux/pci_ids.h>
  43#include <linux/slab.h>
  44#include <linux/module.h>
  45#include <linux/kref.h>
  46#include <linux/mutex.h>
  47#include <linux/uaccess.h>
  48#include <linux/usb.h>
  49#include <linux/workqueue.h>
  50#include <linux/platform_device.h>
  51MODULE_AUTHOR("Tony Olech");
  52MODULE_DESCRIPTION("FTDI ELAN driver");
  53MODULE_LICENSE("GPL");
  54#define INT_MODULE_PARM(n, v) static int n = v;module_param(n, int, 0444)
  55static bool distrust_firmware = 1;
  56module_param(distrust_firmware, bool, 0);
  57MODULE_PARM_DESC(distrust_firmware,
  58                 "true to distrust firmware power/overcurrent setup");
  59extern struct platform_driver u132_platform_driver;
  60/*
  61 * ftdi_module_lock exists to protect access to global variables
  62 *
  63 */
  64static struct mutex ftdi_module_lock;
  65static int ftdi_instances = 0;
  66static struct list_head ftdi_static_list;
  67/*
  68 * end of the global variables protected by ftdi_module_lock
  69 */
  70#include "usb_u132.h"
  71#include <asm/io.h>
  72#include <linux/usb/hcd.h>
  73
  74/* FIXME ohci.h is ONLY for internal use by the OHCI driver.
  75 * If you're going to try stuff like this, you need to split
  76 * out shareable stuff (register declarations?) into its own
  77 * file, maybe name <linux/usb/ohci.h>
  78 */
  79
  80#include "../host/ohci.h"
  81/* Define these values to match your devices*/
  82#define USB_FTDI_ELAN_VENDOR_ID 0x0403
  83#define USB_FTDI_ELAN_PRODUCT_ID 0xd6ea
  84/* table of devices that work with this driver*/
  85static const struct usb_device_id ftdi_elan_table[] = {
  86        {USB_DEVICE(USB_FTDI_ELAN_VENDOR_ID, USB_FTDI_ELAN_PRODUCT_ID)},
  87        { /* Terminating entry */ }
  88};
  89
  90MODULE_DEVICE_TABLE(usb, ftdi_elan_table);
  91/* only the jtag(firmware upgrade device) interface requires
  92 * a device file and corresponding minor number, but the
  93 * interface is created unconditionally - I suppose it could
  94 * be configured or not according to a module parameter.
  95 * But since we(now) require one interface per device,
  96 * and since it unlikely that a normal installation would
  97 * require more than a couple of elan-ftdi devices, 8 seems
  98 * like a reasonable limit to have here, and if someone
  99 * really requires more than 8 devices, then they can frig the
 100 * code and recompile
 101 */
 102#define USB_FTDI_ELAN_MINOR_BASE 192
 103#define COMMAND_BITS 5
 104#define COMMAND_SIZE (1<<COMMAND_BITS)
 105#define COMMAND_MASK (COMMAND_SIZE-1)
 106struct u132_command {
 107        u8 header;
 108        u16 length;
 109        u8 address;
 110        u8 width;
 111        u32 value;
 112        int follows;
 113        void *buffer;
 114};
 115#define RESPOND_BITS 5
 116#define RESPOND_SIZE (1<<RESPOND_BITS)
 117#define RESPOND_MASK (RESPOND_SIZE-1)
 118struct u132_respond {
 119        u8 header;
 120        u8 address;
 121        u32 *value;
 122        int *result;
 123        struct completion wait_completion;
 124};
 125struct u132_target {
 126        void *endp;
 127        struct urb *urb;
 128        int toggle_bits;
 129        int error_count;
 130        int condition_code;
 131        int repeat_number;
 132        int halted;
 133        int skipped;
 134        int actual;
 135        int non_null;
 136        int active;
 137        int abandoning;
 138        void (*callback)(void *endp, struct urb *urb, u8 *buf, int len,
 139                         int toggle_bits, int error_count, int condition_code,
 140                         int repeat_number, int halted, int skipped, int actual,
 141                         int non_null);
 142};
 143/* Structure to hold all of our device specific stuff*/
 144struct usb_ftdi {
 145        struct list_head ftdi_list;
 146        struct mutex u132_lock;
 147        int command_next;
 148        int command_head;
 149        struct u132_command command[COMMAND_SIZE];
 150        int respond_next;
 151        int respond_head;
 152        struct u132_respond respond[RESPOND_SIZE];
 153        struct u132_target target[4];
 154        char device_name[16];
 155        unsigned synchronized:1;
 156        unsigned enumerated:1;
 157        unsigned registered:1;
 158        unsigned initialized:1;
 159        unsigned card_ejected:1;
 160        int function;
 161        int sequence_num;
 162        int disconnected;
 163        int gone_away;
 164        int stuck_status;
 165        int status_queue_delay;
 166        struct semaphore sw_lock;
 167        struct usb_device *udev;
 168        struct usb_interface *interface;
 169        struct usb_class_driver *class;
 170        struct delayed_work status_work;
 171        struct delayed_work command_work;
 172        struct delayed_work respond_work;
 173        struct u132_platform_data platform_data;
 174        struct resource resources[0];
 175        struct platform_device platform_dev;
 176        unsigned char *bulk_in_buffer;
 177        size_t bulk_in_size;
 178        size_t bulk_in_last;
 179        size_t bulk_in_left;
 180        __u8 bulk_in_endpointAddr;
 181        __u8 bulk_out_endpointAddr;
 182        struct kref kref;
 183        u32 controlreg;
 184        u8 response[4 + 1024];
 185        int expected;
 186        int received;
 187        int ed_found;
 188};
 189#define kref_to_usb_ftdi(d) container_of(d, struct usb_ftdi, kref)
 190#define platform_device_to_usb_ftdi(d) container_of(d, struct usb_ftdi, \
 191                                                    platform_dev)
 192static struct usb_driver ftdi_elan_driver;
 193static void ftdi_elan_delete(struct kref *kref)
 194{
 195        struct usb_ftdi *ftdi = kref_to_usb_ftdi(kref);
 196        dev_warn(&ftdi->udev->dev, "FREEING ftdi=%p\n", ftdi);
 197        usb_put_dev(ftdi->udev);
 198        ftdi->disconnected += 1;
 199        mutex_lock(&ftdi_module_lock);
 200        list_del_init(&ftdi->ftdi_list);
 201        ftdi_instances -= 1;
 202        mutex_unlock(&ftdi_module_lock);
 203        kfree(ftdi->bulk_in_buffer);
 204        ftdi->bulk_in_buffer = NULL;
 205        kfree(ftdi);
 206}
 207
 208static void ftdi_elan_put_kref(struct usb_ftdi *ftdi)
 209{
 210        kref_put(&ftdi->kref, ftdi_elan_delete);
 211}
 212
 213static void ftdi_elan_get_kref(struct usb_ftdi *ftdi)
 214{
 215        kref_get(&ftdi->kref);
 216}
 217
 218static void ftdi_elan_init_kref(struct usb_ftdi *ftdi)
 219{
 220        kref_init(&ftdi->kref);
 221}
 222
 223static void ftdi_status_requeue_work(struct usb_ftdi *ftdi, unsigned int delta)
 224{
 225        if (!schedule_delayed_work(&ftdi->status_work, delta))
 226                kref_put(&ftdi->kref, ftdi_elan_delete);
 227}
 228
 229static void ftdi_status_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
 230{
 231        if (schedule_delayed_work(&ftdi->status_work, delta))
 232                kref_get(&ftdi->kref);
 233}
 234
 235static void ftdi_status_cancel_work(struct usb_ftdi *ftdi)
 236{
 237        if (cancel_delayed_work_sync(&ftdi->status_work))
 238                kref_put(&ftdi->kref, ftdi_elan_delete);
 239}
 240
 241static void ftdi_command_requeue_work(struct usb_ftdi *ftdi, unsigned int delta)
 242{
 243        if (!schedule_delayed_work(&ftdi->command_work, delta))
 244                kref_put(&ftdi->kref, ftdi_elan_delete);
 245}
 246
 247static void ftdi_command_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
 248{
 249        if (schedule_delayed_work(&ftdi->command_work, delta))
 250                kref_get(&ftdi->kref);
 251}
 252
 253static void ftdi_command_cancel_work(struct usb_ftdi *ftdi)
 254{
 255        if (cancel_delayed_work_sync(&ftdi->command_work))
 256                kref_put(&ftdi->kref, ftdi_elan_delete);
 257}
 258
 259static void ftdi_response_requeue_work(struct usb_ftdi *ftdi,
 260                                       unsigned int delta)
 261{
 262        if (!schedule_delayed_work(&ftdi->respond_work, delta))
 263                kref_put(&ftdi->kref, ftdi_elan_delete);
 264}
 265
 266static void ftdi_respond_queue_work(struct usb_ftdi *ftdi, unsigned int delta)
 267{
 268        if (schedule_delayed_work(&ftdi->respond_work, delta))
 269                kref_get(&ftdi->kref);
 270}
 271
 272static void ftdi_response_cancel_work(struct usb_ftdi *ftdi)
 273{
 274        if (cancel_delayed_work_sync(&ftdi->respond_work))
 275                kref_put(&ftdi->kref, ftdi_elan_delete);
 276}
 277
 278void ftdi_elan_gone_away(struct platform_device *pdev)
 279{
 280        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
 281        ftdi->gone_away += 1;
 282        ftdi_elan_put_kref(ftdi);
 283}
 284
 285
 286EXPORT_SYMBOL_GPL(ftdi_elan_gone_away);
 287static void ftdi_release_platform_dev(struct device *dev)
 288{
 289        dev->parent = NULL;
 290}
 291
 292static void ftdi_elan_do_callback(struct usb_ftdi *ftdi,
 293                                  struct u132_target *target, u8 *buffer, int length);
 294static void ftdi_elan_kick_command_queue(struct usb_ftdi *ftdi);
 295static void ftdi_elan_kick_respond_queue(struct usb_ftdi *ftdi);
 296static int ftdi_elan_setupOHCI(struct usb_ftdi *ftdi);
 297static int ftdi_elan_checkingPCI(struct usb_ftdi *ftdi);
 298static int ftdi_elan_enumeratePCI(struct usb_ftdi *ftdi);
 299static int ftdi_elan_synchronize(struct usb_ftdi *ftdi);
 300static int ftdi_elan_stuck_waiting(struct usb_ftdi *ftdi);
 301static int ftdi_elan_command_engine(struct usb_ftdi *ftdi);
 302static int ftdi_elan_respond_engine(struct usb_ftdi *ftdi);
 303static int ftdi_elan_hcd_init(struct usb_ftdi *ftdi)
 304{
 305        if (ftdi->platform_dev.dev.parent)
 306                return -EBUSY;
 307
 308        ftdi_elan_get_kref(ftdi);
 309        ftdi->platform_data.potpg = 100;
 310        ftdi->platform_data.reset = NULL;
 311        ftdi->platform_dev.id = ftdi->sequence_num;
 312        ftdi->platform_dev.resource = ftdi->resources;
 313        ftdi->platform_dev.num_resources = ARRAY_SIZE(ftdi->resources);
 314        ftdi->platform_dev.dev.platform_data = &ftdi->platform_data;
 315        ftdi->platform_dev.dev.parent = NULL;
 316        ftdi->platform_dev.dev.release = ftdi_release_platform_dev;
 317        ftdi->platform_dev.dev.dma_mask = NULL;
 318        snprintf(ftdi->device_name, sizeof(ftdi->device_name), "u132_hcd");
 319        ftdi->platform_dev.name = ftdi->device_name;
 320        dev_info(&ftdi->udev->dev, "requesting module '%s'\n", "u132_hcd");
 321        request_module("u132_hcd");
 322        dev_info(&ftdi->udev->dev, "registering '%s'\n",
 323                 ftdi->platform_dev.name);
 324
 325        return platform_device_register(&ftdi->platform_dev);
 326}
 327
 328static void ftdi_elan_abandon_completions(struct usb_ftdi *ftdi)
 329{
 330        mutex_lock(&ftdi->u132_lock);
 331        while (ftdi->respond_next > ftdi->respond_head) {
 332                struct u132_respond *respond = &ftdi->respond[RESPOND_MASK &
 333                                                              ftdi->respond_head++];
 334                *respond->result = -ESHUTDOWN;
 335                *respond->value = 0;
 336                complete(&respond->wait_completion);
 337        }
 338        mutex_unlock(&ftdi->u132_lock);
 339}
 340
 341static void ftdi_elan_abandon_targets(struct usb_ftdi *ftdi)
 342{
 343        int ed_number = 4;
 344        mutex_lock(&ftdi->u132_lock);
 345        while (ed_number-- > 0) {
 346                struct u132_target *target = &ftdi->target[ed_number];
 347                if (target->active == 1) {
 348                        target->condition_code = TD_DEVNOTRESP;
 349                        mutex_unlock(&ftdi->u132_lock);
 350                        ftdi_elan_do_callback(ftdi, target, NULL, 0);
 351                        mutex_lock(&ftdi->u132_lock);
 352                }
 353        }
 354        ftdi->received = 0;
 355        ftdi->expected = 4;
 356        ftdi->ed_found = 0;
 357        mutex_unlock(&ftdi->u132_lock);
 358}
 359
 360static void ftdi_elan_flush_targets(struct usb_ftdi *ftdi)
 361{
 362        int ed_number = 4;
 363        mutex_lock(&ftdi->u132_lock);
 364        while (ed_number-- > 0) {
 365                struct u132_target *target = &ftdi->target[ed_number];
 366                target->abandoning = 1;
 367        wait_1:if (target->active == 1) {
 368                        int command_size = ftdi->command_next -
 369                                ftdi->command_head;
 370                        if (command_size < COMMAND_SIZE) {
 371                                struct u132_command *command = &ftdi->command[
 372                                        COMMAND_MASK & ftdi->command_next];
 373                                command->header = 0x80 | (ed_number << 5) | 0x4;
 374                                command->length = 0x00;
 375                                command->address = 0x00;
 376                                command->width = 0x00;
 377                                command->follows = 0;
 378                                command->value = 0;
 379                                command->buffer = &command->value;
 380                                ftdi->command_next += 1;
 381                                ftdi_elan_kick_command_queue(ftdi);
 382                        } else {
 383                                mutex_unlock(&ftdi->u132_lock);
 384                                msleep(100);
 385                                mutex_lock(&ftdi->u132_lock);
 386                                goto wait_1;
 387                        }
 388                }
 389        wait_2:if (target->active == 1) {
 390                        int command_size = ftdi->command_next -
 391                                ftdi->command_head;
 392                        if (command_size < COMMAND_SIZE) {
 393                                struct u132_command *command = &ftdi->command[
 394                                        COMMAND_MASK & ftdi->command_next];
 395                                command->header = 0x90 | (ed_number << 5);
 396                                command->length = 0x00;
 397                                command->address = 0x00;
 398                                command->width = 0x00;
 399                                command->follows = 0;
 400                                command->value = 0;
 401                                command->buffer = &command->value;
 402                                ftdi->command_next += 1;
 403                                ftdi_elan_kick_command_queue(ftdi);
 404                        } else {
 405                                mutex_unlock(&ftdi->u132_lock);
 406                                msleep(100);
 407                                mutex_lock(&ftdi->u132_lock);
 408                                goto wait_2;
 409                        }
 410                }
 411        }
 412        ftdi->received = 0;
 413        ftdi->expected = 4;
 414        ftdi->ed_found = 0;
 415        mutex_unlock(&ftdi->u132_lock);
 416}
 417
 418static void ftdi_elan_cancel_targets(struct usb_ftdi *ftdi)
 419{
 420        int ed_number = 4;
 421        mutex_lock(&ftdi->u132_lock);
 422        while (ed_number-- > 0) {
 423                struct u132_target *target = &ftdi->target[ed_number];
 424                target->abandoning = 1;
 425        wait:if (target->active == 1) {
 426                        int command_size = ftdi->command_next -
 427                                ftdi->command_head;
 428                        if (command_size < COMMAND_SIZE) {
 429                                struct u132_command *command = &ftdi->command[
 430                                        COMMAND_MASK & ftdi->command_next];
 431                                command->header = 0x80 | (ed_number << 5) | 0x4;
 432                                command->length = 0x00;
 433                                command->address = 0x00;
 434                                command->width = 0x00;
 435                                command->follows = 0;
 436                                command->value = 0;
 437                                command->buffer = &command->value;
 438                                ftdi->command_next += 1;
 439                                ftdi_elan_kick_command_queue(ftdi);
 440                        } else {
 441                                mutex_unlock(&ftdi->u132_lock);
 442                                msleep(100);
 443                                mutex_lock(&ftdi->u132_lock);
 444                                goto wait;
 445                        }
 446                }
 447        }
 448        ftdi->received = 0;
 449        ftdi->expected = 4;
 450        ftdi->ed_found = 0;
 451        mutex_unlock(&ftdi->u132_lock);
 452}
 453
 454static void ftdi_elan_kick_command_queue(struct usb_ftdi *ftdi)
 455{
 456        ftdi_command_queue_work(ftdi, 0);
 457}
 458
 459static void ftdi_elan_command_work(struct work_struct *work)
 460{
 461        struct usb_ftdi *ftdi =
 462                container_of(work, struct usb_ftdi, command_work.work);
 463
 464        if (ftdi->disconnected > 0) {
 465                ftdi_elan_put_kref(ftdi);
 466                return;
 467        } else {
 468                int retval = ftdi_elan_command_engine(ftdi);
 469                if (retval == -ESHUTDOWN) {
 470                        ftdi->disconnected += 1;
 471                } else if (retval == -ENODEV) {
 472                        ftdi->disconnected += 1;
 473                } else if (retval)
 474                        dev_err(&ftdi->udev->dev, "command error %d\n", retval);
 475                ftdi_command_requeue_work(ftdi, msecs_to_jiffies(10));
 476                return;
 477        }
 478}
 479
 480static void ftdi_elan_kick_respond_queue(struct usb_ftdi *ftdi)
 481{
 482        ftdi_respond_queue_work(ftdi, 0);
 483}
 484
 485static void ftdi_elan_respond_work(struct work_struct *work)
 486{
 487        struct usb_ftdi *ftdi =
 488                container_of(work, struct usb_ftdi, respond_work.work);
 489        if (ftdi->disconnected > 0) {
 490                ftdi_elan_put_kref(ftdi);
 491                return;
 492        } else {
 493                int retval = ftdi_elan_respond_engine(ftdi);
 494                if (retval == 0) {
 495                } else if (retval == -ESHUTDOWN) {
 496                        ftdi->disconnected += 1;
 497                } else if (retval == -ENODEV) {
 498                        ftdi->disconnected += 1;
 499                } else if (retval == -EILSEQ) {
 500                        ftdi->disconnected += 1;
 501                } else {
 502                        ftdi->disconnected += 1;
 503                        dev_err(&ftdi->udev->dev, "respond error %d\n", retval);
 504                }
 505                if (ftdi->disconnected > 0) {
 506                        ftdi_elan_abandon_completions(ftdi);
 507                        ftdi_elan_abandon_targets(ftdi);
 508                }
 509                ftdi_response_requeue_work(ftdi, msecs_to_jiffies(10));
 510                return;
 511        }
 512}
 513
 514
 515/*
 516 * the sw_lock is initially held and will be freed
 517 * after the FTDI has been synchronized
 518 *
 519 */
 520static void ftdi_elan_status_work(struct work_struct *work)
 521{
 522        struct usb_ftdi *ftdi =
 523                container_of(work, struct usb_ftdi, status_work.work);
 524        int work_delay_in_msec = 0;
 525        if (ftdi->disconnected > 0) {
 526                ftdi_elan_put_kref(ftdi);
 527                return;
 528        } else if (ftdi->synchronized == 0) {
 529                down(&ftdi->sw_lock);
 530                if (ftdi_elan_synchronize(ftdi) == 0) {
 531                        ftdi->synchronized = 1;
 532                        ftdi_command_queue_work(ftdi, 1);
 533                        ftdi_respond_queue_work(ftdi, 1);
 534                        up(&ftdi->sw_lock);
 535                        work_delay_in_msec = 100;
 536                } else {
 537                        dev_err(&ftdi->udev->dev, "synchronize failed\n");
 538                        up(&ftdi->sw_lock);
 539                        work_delay_in_msec = 10 *1000;
 540                }
 541        } else if (ftdi->stuck_status > 0) {
 542                if (ftdi_elan_stuck_waiting(ftdi) == 0) {
 543                        ftdi->stuck_status = 0;
 544                        ftdi->synchronized = 0;
 545                } else if ((ftdi->stuck_status++ % 60) == 1) {
 546                        dev_err(&ftdi->udev->dev, "WRONG type of card inserted - please remove\n");
 547                } else
 548                        dev_err(&ftdi->udev->dev, "WRONG type of card inserted - checked %d times\n",
 549                                ftdi->stuck_status);
 550                work_delay_in_msec = 100;
 551        } else if (ftdi->enumerated == 0) {
 552                if (ftdi_elan_enumeratePCI(ftdi) == 0) {
 553                        ftdi->enumerated = 1;
 554                        work_delay_in_msec = 250;
 555                } else
 556                        work_delay_in_msec = 1000;
 557        } else if (ftdi->initialized == 0) {
 558                if (ftdi_elan_setupOHCI(ftdi) == 0) {
 559                        ftdi->initialized = 1;
 560                        work_delay_in_msec = 500;
 561                } else {
 562                        dev_err(&ftdi->udev->dev, "initialized failed - trying again in 10 seconds\n");
 563                        work_delay_in_msec = 1 *1000;
 564                }
 565        } else if (ftdi->registered == 0) {
 566                work_delay_in_msec = 10;
 567                if (ftdi_elan_hcd_init(ftdi) == 0) {
 568                        ftdi->registered = 1;
 569                } else
 570                        dev_err(&ftdi->udev->dev, "register failed\n");
 571                work_delay_in_msec = 250;
 572        } else {
 573                if (ftdi_elan_checkingPCI(ftdi) == 0) {
 574                        work_delay_in_msec = 250;
 575                } else if (ftdi->controlreg & 0x00400000) {
 576                        if (ftdi->gone_away > 0) {
 577                                dev_err(&ftdi->udev->dev, "PCI device eject confirmed platform_dev.dev.parent=%p platform_dev.dev=%p\n",
 578                                        ftdi->platform_dev.dev.parent,
 579                                        &ftdi->platform_dev.dev);
 580                                platform_device_unregister(&ftdi->platform_dev);
 581                                ftdi->platform_dev.dev.parent = NULL;
 582                                ftdi->registered = 0;
 583                                ftdi->enumerated = 0;
 584                                ftdi->card_ejected = 0;
 585                                ftdi->initialized = 0;
 586                                ftdi->gone_away = 0;
 587                        } else
 588                                ftdi_elan_flush_targets(ftdi);
 589                        work_delay_in_msec = 250;
 590                } else {
 591                        dev_err(&ftdi->udev->dev, "PCI device has disappeared\n");
 592                        ftdi_elan_cancel_targets(ftdi);
 593                        work_delay_in_msec = 500;
 594                        ftdi->enumerated = 0;
 595                        ftdi->initialized = 0;
 596                }
 597        }
 598        if (ftdi->disconnected > 0) {
 599                ftdi_elan_put_kref(ftdi);
 600                return;
 601        } else {
 602                ftdi_status_requeue_work(ftdi,
 603                                         msecs_to_jiffies(work_delay_in_msec));
 604                return;
 605        }
 606}
 607
 608
 609/*
 610 * file_operations for the jtag interface
 611 *
 612 * the usage count for the device is incremented on open()
 613 * and decremented on release()
 614 */
 615static int ftdi_elan_open(struct inode *inode, struct file *file)
 616{
 617        int subminor;
 618        struct usb_interface *interface;
 619
 620        subminor = iminor(inode);
 621        interface = usb_find_interface(&ftdi_elan_driver, subminor);
 622
 623        if (!interface) {
 624                pr_err("can't find device for minor %d\n", subminor);
 625                return -ENODEV;
 626        } else {
 627                struct usb_ftdi *ftdi = usb_get_intfdata(interface);
 628                if (!ftdi) {
 629                        return -ENODEV;
 630                } else {
 631                        if (down_interruptible(&ftdi->sw_lock)) {
 632                                return -EINTR;
 633                        } else {
 634                                ftdi_elan_get_kref(ftdi);
 635                                file->private_data = ftdi;
 636                                return 0;
 637                        }
 638                }
 639        }
 640}
 641
 642static int ftdi_elan_release(struct inode *inode, struct file *file)
 643{
 644        struct usb_ftdi *ftdi = file->private_data;
 645        if (ftdi == NULL)
 646                return -ENODEV;
 647        up(&ftdi->sw_lock);        /* decrement the count on our device */
 648        ftdi_elan_put_kref(ftdi);
 649        return 0;
 650}
 651
 652
 653/*
 654 *
 655 * blocking bulk reads are used to get data from the device
 656 *
 657 */
 658static ssize_t ftdi_elan_read(struct file *file, char __user *buffer,
 659                              size_t count, loff_t *ppos)
 660{
 661        char data[30 *3 + 4];
 662        char *d = data;
 663        int m = (sizeof(data) - 1) / 3 - 1;
 664        int bytes_read = 0;
 665        int retry_on_empty = 10;
 666        int retry_on_timeout = 5;
 667        struct usb_ftdi *ftdi = file->private_data;
 668        if (ftdi->disconnected > 0) {
 669                return -ENODEV;
 670        }
 671        data[0] = 0;
 672have:if (ftdi->bulk_in_left > 0) {
 673                if (count-- > 0) {
 674                        char *p = ++ftdi->bulk_in_last + ftdi->bulk_in_buffer;
 675                        ftdi->bulk_in_left -= 1;
 676                        if (bytes_read < m) {
 677                                d += sprintf(d, " %02X", 0x000000FF & *p);
 678                        } else if (bytes_read > m) {
 679                        } else
 680                                d += sprintf(d, " ..");
 681                        if (copy_to_user(buffer++, p, 1)) {
 682                                return -EFAULT;
 683                        } else {
 684                                bytes_read += 1;
 685                                goto have;
 686                        }
 687                } else
 688                        return bytes_read;
 689        }
 690more:if (count > 0) {
 691                int packet_bytes = 0;
 692                int retval = usb_bulk_msg(ftdi->udev,
 693                                          usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
 694                                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
 695                                          &packet_bytes, 50);
 696                if (packet_bytes > 2) {
 697                        ftdi->bulk_in_left = packet_bytes - 2;
 698                        ftdi->bulk_in_last = 1;
 699                        goto have;
 700                } else if (retval == -ETIMEDOUT) {
 701                        if (retry_on_timeout-- > 0) {
 702                                goto more;
 703                        } else if (bytes_read > 0) {
 704                                return bytes_read;
 705                        } else
 706                                return retval;
 707                } else if (retval == 0) {
 708                        if (retry_on_empty-- > 0) {
 709                                goto more;
 710                        } else
 711                                return bytes_read;
 712                } else
 713                        return retval;
 714        } else
 715                return bytes_read;
 716}
 717
 718static void ftdi_elan_write_bulk_callback(struct urb *urb)
 719{
 720        struct usb_ftdi *ftdi = urb->context;
 721        int status = urb->status;
 722
 723        if (status && !(status == -ENOENT || status == -ECONNRESET ||
 724                        status == -ESHUTDOWN)) {
 725                dev_err(&ftdi->udev->dev,
 726                        "urb=%p write bulk status received: %d\n", urb, status);
 727        }
 728        usb_free_coherent(urb->dev, urb->transfer_buffer_length,
 729                          urb->transfer_buffer, urb->transfer_dma);
 730}
 731
 732static int fill_buffer_with_all_queued_commands(struct usb_ftdi *ftdi,
 733                                                char *buf, int command_size, int total_size)
 734{
 735        int ed_commands = 0;
 736        int b = 0;
 737        int I = command_size;
 738        int i = ftdi->command_head;
 739        while (I-- > 0) {
 740                struct u132_command *command = &ftdi->command[COMMAND_MASK &
 741                                                              i++];
 742                int F = command->follows;
 743                u8 *f = command->buffer;
 744                if (command->header & 0x80) {
 745                        ed_commands |= 1 << (0x3 & (command->header >> 5));
 746                }
 747                buf[b++] = command->header;
 748                buf[b++] = (command->length >> 0) & 0x00FF;
 749                buf[b++] = (command->length >> 8) & 0x00FF;
 750                buf[b++] = command->address;
 751                buf[b++] = command->width;
 752                while (F-- > 0) {
 753                        buf[b++] = *f++;
 754                }
 755        }
 756        return ed_commands;
 757}
 758
 759static int ftdi_elan_total_command_size(struct usb_ftdi *ftdi, int command_size)
 760{
 761        int total_size = 0;
 762        int I = command_size;
 763        int i = ftdi->command_head;
 764        while (I-- > 0) {
 765                struct u132_command *command = &ftdi->command[COMMAND_MASK &
 766                                                              i++];
 767                total_size += 5 + command->follows;
 768        }
 769        return total_size;
 770}
 771
 772static int ftdi_elan_command_engine(struct usb_ftdi *ftdi)
 773{
 774        int retval;
 775        char *buf;
 776        int ed_commands;
 777        int total_size;
 778        struct urb *urb;
 779        int command_size = ftdi->command_next - ftdi->command_head;
 780        if (command_size == 0)
 781                return 0;
 782        total_size = ftdi_elan_total_command_size(ftdi, command_size);
 783        urb = usb_alloc_urb(0, GFP_KERNEL);
 784        if (!urb)
 785                return -ENOMEM;
 786        buf = usb_alloc_coherent(ftdi->udev, total_size, GFP_KERNEL,
 787                                 &urb->transfer_dma);
 788        if (!buf) {
 789                dev_err(&ftdi->udev->dev, "could not get a buffer to write %d commands totaling %d bytes to the Uxxx\n",
 790                        command_size, total_size);
 791                usb_free_urb(urb);
 792                return -ENOMEM;
 793        }
 794        ed_commands = fill_buffer_with_all_queued_commands(ftdi, buf,
 795                                                           command_size, total_size);
 796        usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
 797                                                           ftdi->bulk_out_endpointAddr), buf, total_size,
 798                          ftdi_elan_write_bulk_callback, ftdi);
 799        urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
 800        if (ed_commands) {
 801                char diag[40 *3 + 4];
 802                char *d = diag;
 803                int m = total_size;
 804                u8 *c = buf;
 805                int s = (sizeof(diag) - 1) / 3;
 806                diag[0] = 0;
 807                while (s-- > 0 && m-- > 0) {
 808                        if (s > 0 || m == 0) {
 809                                d += sprintf(d, " %02X", *c++);
 810                        } else
 811                                d += sprintf(d, " ..");
 812                }
 813        }
 814        retval = usb_submit_urb(urb, GFP_KERNEL);
 815        if (retval) {
 816                dev_err(&ftdi->udev->dev, "failed %d to submit urb %p to write %d commands totaling %d bytes to the Uxxx\n",
 817                        retval, urb, command_size, total_size);
 818                usb_free_coherent(ftdi->udev, total_size, buf, urb->transfer_dma);
 819                usb_free_urb(urb);
 820                return retval;
 821        }
 822        usb_free_urb(urb);        /* release our reference to this urb,
 823                                     the USB core will eventually free it entirely */
 824        ftdi->command_head += command_size;
 825        ftdi_elan_kick_respond_queue(ftdi);
 826        return 0;
 827}
 828
 829static void ftdi_elan_do_callback(struct usb_ftdi *ftdi,
 830                                  struct u132_target *target, u8 *buffer, int length)
 831{
 832        struct urb *urb = target->urb;
 833        int halted = target->halted;
 834        int skipped = target->skipped;
 835        int actual = target->actual;
 836        int non_null = target->non_null;
 837        int toggle_bits = target->toggle_bits;
 838        int error_count = target->error_count;
 839        int condition_code = target->condition_code;
 840        int repeat_number = target->repeat_number;
 841        void (*callback) (void *, struct urb *, u8 *, int, int, int, int, int,
 842                          int, int, int, int) = target->callback;
 843        target->active -= 1;
 844        target->callback = NULL;
 845        (*callback) (target->endp, urb, buffer, length, toggle_bits,
 846                     error_count, condition_code, repeat_number, halted, skipped,
 847                     actual, non_null);
 848}
 849
 850static char *have_ed_set_response(struct usb_ftdi *ftdi,
 851                                  struct u132_target *target, u16 ed_length, int ed_number, int ed_type,
 852                                  char *b)
 853{
 854        int payload = (ed_length >> 0) & 0x07FF;
 855        mutex_lock(&ftdi->u132_lock);
 856        target->actual = 0;
 857        target->non_null = (ed_length >> 15) & 0x0001;
 858        target->repeat_number = (ed_length >> 11) & 0x000F;
 859        if (ed_type == 0x02 || ed_type == 0x03) {
 860                if (payload == 0 || target->abandoning > 0) {
 861                        target->abandoning = 0;
 862                        mutex_unlock(&ftdi->u132_lock);
 863                        ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
 864                                              payload);
 865                        ftdi->received = 0;
 866                        ftdi->expected = 4;
 867                        ftdi->ed_found = 0;
 868                        return ftdi->response;
 869                } else {
 870                        ftdi->expected = 4 + payload;
 871                        ftdi->ed_found = 1;
 872                        mutex_unlock(&ftdi->u132_lock);
 873                        return b;
 874                }
 875        } else {
 876                target->abandoning = 0;
 877                mutex_unlock(&ftdi->u132_lock);
 878                ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
 879                                      payload);
 880                ftdi->received = 0;
 881                ftdi->expected = 4;
 882                ftdi->ed_found = 0;
 883                return ftdi->response;
 884        }
 885}
 886
 887static char *have_ed_get_response(struct usb_ftdi *ftdi,
 888                                  struct u132_target *target, u16 ed_length, int ed_number, int ed_type,
 889                                  char *b)
 890{
 891        mutex_lock(&ftdi->u132_lock);
 892        target->condition_code = TD_DEVNOTRESP;
 893        target->actual = (ed_length >> 0) & 0x01FF;
 894        target->non_null = (ed_length >> 15) & 0x0001;
 895        target->repeat_number = (ed_length >> 11) & 0x000F;
 896        mutex_unlock(&ftdi->u132_lock);
 897        if (target->active)
 898                ftdi_elan_do_callback(ftdi, target, NULL, 0);
 899        target->abandoning = 0;
 900        ftdi->received = 0;
 901        ftdi->expected = 4;
 902        ftdi->ed_found = 0;
 903        return ftdi->response;
 904}
 905
 906
 907/*
 908 * The engine tries to empty the FTDI fifo
 909 *
 910 * all responses found in the fifo data are dispatched thus
 911 * the response buffer can only ever hold a maximum sized
 912 * response from the Uxxx.
 913 *
 914 */
 915static int ftdi_elan_respond_engine(struct usb_ftdi *ftdi)
 916{
 917        u8 *b = ftdi->response + ftdi->received;
 918        int bytes_read = 0;
 919        int retry_on_empty = 1;
 920        int retry_on_timeout = 3;
 921read:{
 922                int packet_bytes = 0;
 923                int retval = usb_bulk_msg(ftdi->udev,
 924                                          usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
 925                                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
 926                                          &packet_bytes, 500);
 927                char diag[30 *3 + 4];
 928                char *d = diag;
 929                int m = packet_bytes;
 930                u8 *c = ftdi->bulk_in_buffer;
 931                int s = (sizeof(diag) - 1) / 3;
 932                diag[0] = 0;
 933                while (s-- > 0 && m-- > 0) {
 934                        if (s > 0 || m == 0) {
 935                                d += sprintf(d, " %02X", *c++);
 936                        } else
 937                                d += sprintf(d, " ..");
 938                }
 939                if (packet_bytes > 2) {
 940                        ftdi->bulk_in_left = packet_bytes - 2;
 941                        ftdi->bulk_in_last = 1;
 942                        goto have;
 943                } else if (retval == -ETIMEDOUT) {
 944                        if (retry_on_timeout-- > 0) {
 945                                dev_err(&ftdi->udev->dev, "TIMED OUT with packet_bytes = %d with total %d bytes%s\n",
 946                                        packet_bytes, bytes_read, diag);
 947                                goto more;
 948                        } else if (bytes_read > 0) {
 949                                dev_err(&ftdi->udev->dev, "ONLY %d bytes%s\n",
 950                                        bytes_read, diag);
 951                                return -ENOMEM;
 952                        } else {
 953                                dev_err(&ftdi->udev->dev, "TIMED OUT with packet_bytes = %d with total %d bytes%s\n",
 954                                        packet_bytes, bytes_read, diag);
 955                                return -ENOMEM;
 956                        }
 957                } else if (retval == -EILSEQ) {
 958                        dev_err(&ftdi->udev->dev, "error = %d with packet_bytes = %d with total %d bytes%s\n",
 959                                retval, packet_bytes, bytes_read, diag);
 960                        return retval;
 961                } else if (retval) {
 962                        dev_err(&ftdi->udev->dev, "error = %d with packet_bytes = %d with total %d bytes%s\n",
 963                                retval, packet_bytes, bytes_read, diag);
 964                        return retval;
 965                } else {
 966                        if (retry_on_empty-- > 0) {
 967                                goto more;
 968                        } else
 969                                return 0;
 970                }
 971        }
 972more:{
 973                goto read;
 974        }
 975have:if (ftdi->bulk_in_left > 0) {
 976                u8 c = ftdi->bulk_in_buffer[++ftdi->bulk_in_last];
 977                bytes_read += 1;
 978                ftdi->bulk_in_left -= 1;
 979                if (ftdi->received == 0 && c == 0xFF) {
 980                        goto have;
 981                } else
 982                        *b++ = c;
 983                if (++ftdi->received < ftdi->expected) {
 984                        goto have;
 985                } else if (ftdi->ed_found) {
 986                        int ed_number = (ftdi->response[0] >> 5) & 0x03;
 987                        u16 ed_length = (ftdi->response[2] << 8) |
 988                                ftdi->response[1];
 989                        struct u132_target *target = &ftdi->target[ed_number];
 990                        int payload = (ed_length >> 0) & 0x07FF;
 991                        char diag[30 *3 + 4];
 992                        char *d = diag;
 993                        int m = payload;
 994                        u8 *c = 4 + ftdi->response;
 995                        int s = (sizeof(diag) - 1) / 3;
 996                        diag[0] = 0;
 997                        while (s-- > 0 && m-- > 0) {
 998                                if (s > 0 || m == 0) {
 999                                        d += sprintf(d, " %02X", *c++);
1000                                } else
1001                                        d += sprintf(d, " ..");
1002                        }
1003                        ftdi_elan_do_callback(ftdi, target, 4 + ftdi->response,
1004                                              payload);
1005                        ftdi->received = 0;
1006                        ftdi->expected = 4;
1007                        ftdi->ed_found = 0;
1008                        b = ftdi->response;
1009                        goto have;
1010                } else if (ftdi->expected == 8) {
1011                        u8 buscmd;
1012                        int respond_head = ftdi->respond_head++;
1013                        struct u132_respond *respond = &ftdi->respond[
1014                                RESPOND_MASK & respond_head];
1015                        u32 data = ftdi->response[7];
1016                        data <<= 8;
1017                        data |= ftdi->response[6];
1018                        data <<= 8;
1019                        data |= ftdi->response[5];
1020                        data <<= 8;
1021                        data |= ftdi->response[4];
1022                        *respond->value = data;
1023                        *respond->result = 0;
1024                        complete(&respond->wait_completion);
1025                        ftdi->received = 0;
1026                        ftdi->expected = 4;
1027                        ftdi->ed_found = 0;
1028                        b = ftdi->response;
1029                        buscmd = (ftdi->response[0] >> 0) & 0x0F;
1030                        if (buscmd == 0x00) {
1031                        } else if (buscmd == 0x02) {
1032                        } else if (buscmd == 0x06) {
1033                        } else if (buscmd == 0x0A) {
1034                        } else
1035                                dev_err(&ftdi->udev->dev, "Uxxx unknown(%0X) value = %08X\n",
1036                                        buscmd, data);
1037                        goto have;
1038                } else {
1039                        if ((ftdi->response[0] & 0x80) == 0x00) {
1040                                ftdi->expected = 8;
1041                                goto have;
1042                        } else {
1043                                int ed_number = (ftdi->response[0] >> 5) & 0x03;
1044                                int ed_type = (ftdi->response[0] >> 0) & 0x03;
1045                                u16 ed_length = (ftdi->response[2] << 8) |
1046                                        ftdi->response[1];
1047                                struct u132_target *target = &ftdi->target[
1048                                        ed_number];
1049                                target->halted = (ftdi->response[0] >> 3) &
1050                                        0x01;
1051                                target->skipped = (ftdi->response[0] >> 2) &
1052                                        0x01;
1053                                target->toggle_bits = (ftdi->response[3] >> 6)
1054                                        & 0x03;
1055                                target->error_count = (ftdi->response[3] >> 4)
1056                                        & 0x03;
1057                                target->condition_code = (ftdi->response[
1058                                                                  3] >> 0) & 0x0F;
1059                                if ((ftdi->response[0] & 0x10) == 0x00) {
1060                                        b = have_ed_set_response(ftdi, target,
1061                                                                 ed_length, ed_number, ed_type,
1062                                                                 b);
1063                                        goto have;
1064                                } else {
1065                                        b = have_ed_get_response(ftdi, target,
1066                                                                 ed_length, ed_number, ed_type,
1067                                                                 b);
1068                                        goto have;
1069                                }
1070                        }
1071                }
1072        } else
1073                goto more;
1074}
1075
1076
1077/*
1078 * create a urb, and a buffer for it, and copy the data to the urb
1079 *
1080 */
1081static ssize_t ftdi_elan_write(struct file *file,
1082                               const char __user *user_buffer, size_t count,
1083                               loff_t *ppos)
1084{
1085        int retval = 0;
1086        struct urb *urb;
1087        char *buf;
1088        struct usb_ftdi *ftdi = file->private_data;
1089
1090        if (ftdi->disconnected > 0) {
1091                return -ENODEV;
1092        }
1093        if (count == 0) {
1094                goto exit;
1095        }
1096        urb = usb_alloc_urb(0, GFP_KERNEL);
1097        if (!urb) {
1098                retval = -ENOMEM;
1099                goto error_1;
1100        }
1101        buf = usb_alloc_coherent(ftdi->udev, count, GFP_KERNEL,
1102                                 &urb->transfer_dma);
1103        if (!buf) {
1104                retval = -ENOMEM;
1105                goto error_2;
1106        }
1107        if (copy_from_user(buf, user_buffer, count)) {
1108                retval = -EFAULT;
1109                goto error_3;
1110        }
1111        usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1112                                                           ftdi->bulk_out_endpointAddr), buf, count,
1113                          ftdi_elan_write_bulk_callback, ftdi);
1114        urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1115        retval = usb_submit_urb(urb, GFP_KERNEL);
1116        if (retval) {
1117                dev_err(&ftdi->udev->dev,
1118                        "failed submitting write urb, error %d\n", retval);
1119                goto error_3;
1120        }
1121        usb_free_urb(urb);
1122
1123exit:
1124        return count;
1125error_3:
1126        usb_free_coherent(ftdi->udev, count, buf, urb->transfer_dma);
1127error_2:
1128        usb_free_urb(urb);
1129error_1:
1130        return retval;
1131}
1132
1133static const struct file_operations ftdi_elan_fops = {
1134        .owner = THIS_MODULE,
1135        .llseek = no_llseek,
1136        .read = ftdi_elan_read,
1137        .write = ftdi_elan_write,
1138        .open = ftdi_elan_open,
1139        .release = ftdi_elan_release,
1140};
1141
1142/*
1143 * usb class driver info in order to get a minor number from the usb core,
1144 * and to have the device registered with the driver core
1145 */
1146static struct usb_class_driver ftdi_elan_jtag_class = {
1147        .name = "ftdi-%d-jtag",
1148        .fops = &ftdi_elan_fops,
1149        .minor_base = USB_FTDI_ELAN_MINOR_BASE,
1150};
1151
1152/*
1153 * the following definitions are for the
1154 * ELAN FPGA state machgine processor that
1155 * lies on the other side of the FTDI chip
1156 */
1157#define cPCIu132rd 0x0
1158#define cPCIu132wr 0x1
1159#define cPCIiord 0x2
1160#define cPCIiowr 0x3
1161#define cPCImemrd 0x6
1162#define cPCImemwr 0x7
1163#define cPCIcfgrd 0xA
1164#define cPCIcfgwr 0xB
1165#define cPCInull 0xF
1166#define cU132cmd_status 0x0
1167#define cU132flash 0x1
1168#define cPIDsetup 0x0
1169#define cPIDout 0x1
1170#define cPIDin 0x2
1171#define cPIDinonce 0x3
1172#define cCCnoerror 0x0
1173#define cCCcrc 0x1
1174#define cCCbitstuff 0x2
1175#define cCCtoggle 0x3
1176#define cCCstall 0x4
1177#define cCCnoresp 0x5
1178#define cCCbadpid1 0x6
1179#define cCCbadpid2 0x7
1180#define cCCdataoverrun 0x8
1181#define cCCdataunderrun 0x9
1182#define cCCbuffoverrun 0xC
1183#define cCCbuffunderrun 0xD
1184#define cCCnotaccessed 0xF
1185static int ftdi_elan_write_reg(struct usb_ftdi *ftdi, u32 data)
1186{
1187wait:if (ftdi->disconnected > 0) {
1188                return -ENODEV;
1189        } else {
1190                int command_size;
1191                mutex_lock(&ftdi->u132_lock);
1192                command_size = ftdi->command_next - ftdi->command_head;
1193                if (command_size < COMMAND_SIZE) {
1194                        struct u132_command *command = &ftdi->command[
1195                                COMMAND_MASK & ftdi->command_next];
1196                        command->header = 0x00 | cPCIu132wr;
1197                        command->length = 0x04;
1198                        command->address = 0x00;
1199                        command->width = 0x00;
1200                        command->follows = 4;
1201                        command->value = data;
1202                        command->buffer = &command->value;
1203                        ftdi->command_next += 1;
1204                        ftdi_elan_kick_command_queue(ftdi);
1205                        mutex_unlock(&ftdi->u132_lock);
1206                        return 0;
1207                } else {
1208                        mutex_unlock(&ftdi->u132_lock);
1209                        msleep(100);
1210                        goto wait;
1211                }
1212        }
1213}
1214
1215static int ftdi_elan_write_config(struct usb_ftdi *ftdi, int config_offset,
1216                                  u8 width, u32 data)
1217{
1218        u8 addressofs = config_offset / 4;
1219wait:if (ftdi->disconnected > 0) {
1220                return -ENODEV;
1221        } else {
1222                int command_size;
1223                mutex_lock(&ftdi->u132_lock);
1224                command_size = ftdi->command_next - ftdi->command_head;
1225                if (command_size < COMMAND_SIZE) {
1226                        struct u132_command *command = &ftdi->command[
1227                                COMMAND_MASK & ftdi->command_next];
1228                        command->header = 0x00 | (cPCIcfgwr & 0x0F);
1229                        command->length = 0x04;
1230                        command->address = addressofs;
1231                        command->width = 0x00 | (width & 0x0F);
1232                        command->follows = 4;
1233                        command->value = data;
1234                        command->buffer = &command->value;
1235                        ftdi->command_next += 1;
1236                        ftdi_elan_kick_command_queue(ftdi);
1237                        mutex_unlock(&ftdi->u132_lock);
1238                        return 0;
1239                } else {
1240                        mutex_unlock(&ftdi->u132_lock);
1241                        msleep(100);
1242                        goto wait;
1243                }
1244        }
1245}
1246
1247static int ftdi_elan_write_pcimem(struct usb_ftdi *ftdi, int mem_offset,
1248                                  u8 width, u32 data)
1249{
1250        u8 addressofs = mem_offset / 4;
1251wait:if (ftdi->disconnected > 0) {
1252                return -ENODEV;
1253        } else {
1254                int command_size;
1255                mutex_lock(&ftdi->u132_lock);
1256                command_size = ftdi->command_next - ftdi->command_head;
1257                if (command_size < COMMAND_SIZE) {
1258                        struct u132_command *command = &ftdi->command[
1259                                COMMAND_MASK & ftdi->command_next];
1260                        command->header = 0x00 | (cPCImemwr & 0x0F);
1261                        command->length = 0x04;
1262                        command->address = addressofs;
1263                        command->width = 0x00 | (width & 0x0F);
1264                        command->follows = 4;
1265                        command->value = data;
1266                        command->buffer = &command->value;
1267                        ftdi->command_next += 1;
1268                        ftdi_elan_kick_command_queue(ftdi);
1269                        mutex_unlock(&ftdi->u132_lock);
1270                        return 0;
1271                } else {
1272                        mutex_unlock(&ftdi->u132_lock);
1273                        msleep(100);
1274                        goto wait;
1275                }
1276        }
1277}
1278
1279int usb_ftdi_elan_write_pcimem(struct platform_device *pdev, int mem_offset,
1280                               u8 width, u32 data)
1281{
1282        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1283        return ftdi_elan_write_pcimem(ftdi, mem_offset, width, data);
1284}
1285
1286
1287EXPORT_SYMBOL_GPL(usb_ftdi_elan_write_pcimem);
1288static int ftdi_elan_read_reg(struct usb_ftdi *ftdi, u32 *data)
1289{
1290wait:if (ftdi->disconnected > 0) {
1291                return -ENODEV;
1292        } else {
1293                int command_size;
1294                int respond_size;
1295                mutex_lock(&ftdi->u132_lock);
1296                command_size = ftdi->command_next - ftdi->command_head;
1297                respond_size = ftdi->respond_next - ftdi->respond_head;
1298                if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1299                {
1300                        struct u132_command *command = &ftdi->command[
1301                                COMMAND_MASK & ftdi->command_next];
1302                        struct u132_respond *respond = &ftdi->respond[
1303                                RESPOND_MASK & ftdi->respond_next];
1304                        int result = -ENODEV;
1305                        respond->result = &result;
1306                        respond->header = command->header = 0x00 | cPCIu132rd;
1307                        command->length = 0x04;
1308                        respond->address = command->address = cU132cmd_status;
1309                        command->width = 0x00;
1310                        command->follows = 0;
1311                        command->value = 0;
1312                        command->buffer = NULL;
1313                        respond->value = data;
1314                        init_completion(&respond->wait_completion);
1315                        ftdi->command_next += 1;
1316                        ftdi->respond_next += 1;
1317                        ftdi_elan_kick_command_queue(ftdi);
1318                        mutex_unlock(&ftdi->u132_lock);
1319                        wait_for_completion(&respond->wait_completion);
1320                        return result;
1321                } else {
1322                        mutex_unlock(&ftdi->u132_lock);
1323                        msleep(100);
1324                        goto wait;
1325                }
1326        }
1327}
1328
1329static int ftdi_elan_read_config(struct usb_ftdi *ftdi, int config_offset,
1330                                 u8 width, u32 *data)
1331{
1332        u8 addressofs = config_offset / 4;
1333wait:if (ftdi->disconnected > 0) {
1334                return -ENODEV;
1335        } else {
1336                int command_size;
1337                int respond_size;
1338                mutex_lock(&ftdi->u132_lock);
1339                command_size = ftdi->command_next - ftdi->command_head;
1340                respond_size = ftdi->respond_next - ftdi->respond_head;
1341                if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1342                {
1343                        struct u132_command *command = &ftdi->command[
1344                                COMMAND_MASK & ftdi->command_next];
1345                        struct u132_respond *respond = &ftdi->respond[
1346                                RESPOND_MASK & ftdi->respond_next];
1347                        int result = -ENODEV;
1348                        respond->result = &result;
1349                        respond->header = command->header = 0x00 | (cPCIcfgrd &
1350                                                                    0x0F);
1351                        command->length = 0x04;
1352                        respond->address = command->address = addressofs;
1353                        command->width = 0x00 | (width & 0x0F);
1354                        command->follows = 0;
1355                        command->value = 0;
1356                        command->buffer = NULL;
1357                        respond->value = data;
1358                        init_completion(&respond->wait_completion);
1359                        ftdi->command_next += 1;
1360                        ftdi->respond_next += 1;
1361                        ftdi_elan_kick_command_queue(ftdi);
1362                        mutex_unlock(&ftdi->u132_lock);
1363                        wait_for_completion(&respond->wait_completion);
1364                        return result;
1365                } else {
1366                        mutex_unlock(&ftdi->u132_lock);
1367                        msleep(100);
1368                        goto wait;
1369                }
1370        }
1371}
1372
1373static int ftdi_elan_read_pcimem(struct usb_ftdi *ftdi, int mem_offset,
1374                                 u8 width, u32 *data)
1375{
1376        u8 addressofs = mem_offset / 4;
1377wait:if (ftdi->disconnected > 0) {
1378                return -ENODEV;
1379        } else {
1380                int command_size;
1381                int respond_size;
1382                mutex_lock(&ftdi->u132_lock);
1383                command_size = ftdi->command_next - ftdi->command_head;
1384                respond_size = ftdi->respond_next - ftdi->respond_head;
1385                if (command_size < COMMAND_SIZE && respond_size < RESPOND_SIZE)
1386                {
1387                        struct u132_command *command = &ftdi->command[
1388                                COMMAND_MASK & ftdi->command_next];
1389                        struct u132_respond *respond = &ftdi->respond[
1390                                RESPOND_MASK & ftdi->respond_next];
1391                        int result = -ENODEV;
1392                        respond->result = &result;
1393                        respond->header = command->header = 0x00 | (cPCImemrd &
1394                                                                    0x0F);
1395                        command->length = 0x04;
1396                        respond->address = command->address = addressofs;
1397                        command->width = 0x00 | (width & 0x0F);
1398                        command->follows = 0;
1399                        command->value = 0;
1400                        command->buffer = NULL;
1401                        respond->value = data;
1402                        init_completion(&respond->wait_completion);
1403                        ftdi->command_next += 1;
1404                        ftdi->respond_next += 1;
1405                        ftdi_elan_kick_command_queue(ftdi);
1406                        mutex_unlock(&ftdi->u132_lock);
1407                        wait_for_completion(&respond->wait_completion);
1408                        return result;
1409                } else {
1410                        mutex_unlock(&ftdi->u132_lock);
1411                        msleep(100);
1412                        goto wait;
1413                }
1414        }
1415}
1416
1417int usb_ftdi_elan_read_pcimem(struct platform_device *pdev, int mem_offset,
1418                              u8 width, u32 *data)
1419{
1420        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1421        if (ftdi->initialized == 0) {
1422                return -ENODEV;
1423        } else
1424                return ftdi_elan_read_pcimem(ftdi, mem_offset, width, data);
1425}
1426
1427
1428EXPORT_SYMBOL_GPL(usb_ftdi_elan_read_pcimem);
1429static int ftdi_elan_edset_setup(struct usb_ftdi *ftdi, u8 ed_number,
1430                                 void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1431                                 void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1432                                                   int toggle_bits, int error_count, int condition_code, int repeat_number,
1433                                                   int halted, int skipped, int actual, int non_null))
1434{
1435        u8 ed = ed_number - 1;
1436wait:if (ftdi->disconnected > 0) {
1437                return -ENODEV;
1438        } else if (ftdi->initialized == 0) {
1439                return -ENODEV;
1440        } else {
1441                int command_size;
1442                mutex_lock(&ftdi->u132_lock);
1443                command_size = ftdi->command_next - ftdi->command_head;
1444                if (command_size < COMMAND_SIZE) {
1445                        struct u132_target *target = &ftdi->target[ed];
1446                        struct u132_command *command = &ftdi->command[
1447                                COMMAND_MASK & ftdi->command_next];
1448                        command->header = 0x80 | (ed << 5);
1449                        command->length = 0x8007;
1450                        command->address = (toggle_bits << 6) | (ep_number << 2)
1451                                | (address << 0);
1452                        command->width = usb_maxpacket(urb->dev, urb->pipe);
1453                        command->follows = 8;
1454                        command->value = 0;
1455                        command->buffer = urb->setup_packet;
1456                        target->callback = callback;
1457                        target->endp = endp;
1458                        target->urb = urb;
1459                        target->active = 1;
1460                        ftdi->command_next += 1;
1461                        ftdi_elan_kick_command_queue(ftdi);
1462                        mutex_unlock(&ftdi->u132_lock);
1463                        return 0;
1464                } else {
1465                        mutex_unlock(&ftdi->u132_lock);
1466                        msleep(100);
1467                        goto wait;
1468                }
1469        }
1470}
1471
1472int usb_ftdi_elan_edset_setup(struct platform_device *pdev, u8 ed_number,
1473                              void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1474                              void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1475                                                int toggle_bits, int error_count, int condition_code, int repeat_number,
1476                                                int halted, int skipped, int actual, int non_null))
1477{
1478        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1479        return ftdi_elan_edset_setup(ftdi, ed_number, endp, urb, address,
1480                                     ep_number, toggle_bits, callback);
1481}
1482
1483
1484EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_setup);
1485static int ftdi_elan_edset_input(struct usb_ftdi *ftdi, u8 ed_number,
1486                                 void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1487                                 void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1488                                                   int toggle_bits, int error_count, int condition_code, int repeat_number,
1489                                                   int halted, int skipped, int actual, int non_null))
1490{
1491        u8 ed = ed_number - 1;
1492wait:if (ftdi->disconnected > 0) {
1493                return -ENODEV;
1494        } else if (ftdi->initialized == 0) {
1495                return -ENODEV;
1496        } else {
1497                int command_size;
1498                mutex_lock(&ftdi->u132_lock);
1499                command_size = ftdi->command_next - ftdi->command_head;
1500                if (command_size < COMMAND_SIZE) {
1501                        struct u132_target *target = &ftdi->target[ed];
1502                        struct u132_command *command = &ftdi->command[
1503                                COMMAND_MASK & ftdi->command_next];
1504                        u32 remaining_length = urb->transfer_buffer_length -
1505                                urb->actual_length;
1506                        command->header = 0x82 | (ed << 5);
1507                        if (remaining_length == 0) {
1508                                command->length = 0x0000;
1509                        } else if (remaining_length > 1024) {
1510                                command->length = 0x8000 | 1023;
1511                        } else
1512                                command->length = 0x8000 | (remaining_length -
1513                                                            1);
1514                        command->address = (toggle_bits << 6) | (ep_number << 2)
1515                                | (address << 0);
1516                        command->width = usb_maxpacket(urb->dev, urb->pipe);
1517                        command->follows = 0;
1518                        command->value = 0;
1519                        command->buffer = NULL;
1520                        target->callback = callback;
1521                        target->endp = endp;
1522                        target->urb = urb;
1523                        target->active = 1;
1524                        ftdi->command_next += 1;
1525                        ftdi_elan_kick_command_queue(ftdi);
1526                        mutex_unlock(&ftdi->u132_lock);
1527                        return 0;
1528                } else {
1529                        mutex_unlock(&ftdi->u132_lock);
1530                        msleep(100);
1531                        goto wait;
1532                }
1533        }
1534}
1535
1536int usb_ftdi_elan_edset_input(struct platform_device *pdev, u8 ed_number,
1537                              void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1538                              void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1539                                                int toggle_bits, int error_count, int condition_code, int repeat_number,
1540                                                int halted, int skipped, int actual, int non_null))
1541{
1542        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1543        return ftdi_elan_edset_input(ftdi, ed_number, endp, urb, address,
1544                                     ep_number, toggle_bits, callback);
1545}
1546
1547
1548EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_input);
1549static int ftdi_elan_edset_empty(struct usb_ftdi *ftdi, u8 ed_number,
1550                                 void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1551                                 void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1552                                                   int toggle_bits, int error_count, int condition_code, int repeat_number,
1553                                                   int halted, int skipped, int actual, int non_null))
1554{
1555        u8 ed = ed_number - 1;
1556wait:if (ftdi->disconnected > 0) {
1557                return -ENODEV;
1558        } else if (ftdi->initialized == 0) {
1559                return -ENODEV;
1560        } else {
1561                int command_size;
1562                mutex_lock(&ftdi->u132_lock);
1563                command_size = ftdi->command_next - ftdi->command_head;
1564                if (command_size < COMMAND_SIZE) {
1565                        struct u132_target *target = &ftdi->target[ed];
1566                        struct u132_command *command = &ftdi->command[
1567                                COMMAND_MASK & ftdi->command_next];
1568                        command->header = 0x81 | (ed << 5);
1569                        command->length = 0x0000;
1570                        command->address = (toggle_bits << 6) | (ep_number << 2)
1571                                | (address << 0);
1572                        command->width = usb_maxpacket(urb->dev, urb->pipe);
1573                        command->follows = 0;
1574                        command->value = 0;
1575                        command->buffer = NULL;
1576                        target->callback = callback;
1577                        target->endp = endp;
1578                        target->urb = urb;
1579                        target->active = 1;
1580                        ftdi->command_next += 1;
1581                        ftdi_elan_kick_command_queue(ftdi);
1582                        mutex_unlock(&ftdi->u132_lock);
1583                        return 0;
1584                } else {
1585                        mutex_unlock(&ftdi->u132_lock);
1586                        msleep(100);
1587                        goto wait;
1588                }
1589        }
1590}
1591
1592int usb_ftdi_elan_edset_empty(struct platform_device *pdev, u8 ed_number,
1593                              void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1594                              void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1595                                                int toggle_bits, int error_count, int condition_code, int repeat_number,
1596                                                int halted, int skipped, int actual, int non_null))
1597{
1598        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1599        return ftdi_elan_edset_empty(ftdi, ed_number, endp, urb, address,
1600                                     ep_number, toggle_bits, callback);
1601}
1602
1603
1604EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_empty);
1605static int ftdi_elan_edset_output(struct usb_ftdi *ftdi, u8 ed_number,
1606                                  void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1607                                  void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1608                                                    int toggle_bits, int error_count, int condition_code, int repeat_number,
1609                                                    int halted, int skipped, int actual, int non_null))
1610{
1611        u8 ed = ed_number - 1;
1612wait:if (ftdi->disconnected > 0) {
1613                return -ENODEV;
1614        } else if (ftdi->initialized == 0) {
1615                return -ENODEV;
1616        } else {
1617                int command_size;
1618                mutex_lock(&ftdi->u132_lock);
1619                command_size = ftdi->command_next - ftdi->command_head;
1620                if (command_size < COMMAND_SIZE) {
1621                        u8 *b;
1622                        u16 urb_size;
1623                        int i = 0;
1624                        char data[30 *3 + 4];
1625                        char *d = data;
1626                        int m = (sizeof(data) - 1) / 3 - 1;
1627                        int l = 0;
1628                        struct u132_target *target = &ftdi->target[ed];
1629                        struct u132_command *command = &ftdi->command[
1630                                COMMAND_MASK & ftdi->command_next];
1631                        command->header = 0x81 | (ed << 5);
1632                        command->address = (toggle_bits << 6) | (ep_number << 2)
1633                                | (address << 0);
1634                        command->width = usb_maxpacket(urb->dev, urb->pipe);
1635                        command->follows = min_t(u32, 1024,
1636                                                 urb->transfer_buffer_length -
1637                                                 urb->actual_length);
1638                        command->value = 0;
1639                        command->buffer = urb->transfer_buffer +
1640                                urb->actual_length;
1641                        command->length = 0x8000 | (command->follows - 1);
1642                        b = command->buffer;
1643                        urb_size = command->follows;
1644                        data[0] = 0;
1645                        while (urb_size-- > 0) {
1646                                if (i > m) {
1647                                } else if (i++ < m) {
1648                                        int w = sprintf(d, " %02X", *b++);
1649                                        d += w;
1650                                        l += w;
1651                                } else
1652                                        d += sprintf(d, " ..");
1653                        }
1654                        target->callback = callback;
1655                        target->endp = endp;
1656                        target->urb = urb;
1657                        target->active = 1;
1658                        ftdi->command_next += 1;
1659                        ftdi_elan_kick_command_queue(ftdi);
1660                        mutex_unlock(&ftdi->u132_lock);
1661                        return 0;
1662                } else {
1663                        mutex_unlock(&ftdi->u132_lock);
1664                        msleep(100);
1665                        goto wait;
1666                }
1667        }
1668}
1669
1670int usb_ftdi_elan_edset_output(struct platform_device *pdev, u8 ed_number,
1671                               void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1672                               void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1673                                                 int toggle_bits, int error_count, int condition_code, int repeat_number,
1674                                                 int halted, int skipped, int actual, int non_null))
1675{
1676        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1677        return ftdi_elan_edset_output(ftdi, ed_number, endp, urb, address,
1678                                      ep_number, toggle_bits, callback);
1679}
1680
1681
1682EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_output);
1683static int ftdi_elan_edset_single(struct usb_ftdi *ftdi, u8 ed_number,
1684                                  void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1685                                  void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1686                                                    int toggle_bits, int error_count, int condition_code, int repeat_number,
1687                                                    int halted, int skipped, int actual, int non_null))
1688{
1689        u8 ed = ed_number - 1;
1690wait:if (ftdi->disconnected > 0) {
1691                return -ENODEV;
1692        } else if (ftdi->initialized == 0) {
1693                return -ENODEV;
1694        } else {
1695                int command_size;
1696                mutex_lock(&ftdi->u132_lock);
1697                command_size = ftdi->command_next - ftdi->command_head;
1698                if (command_size < COMMAND_SIZE) {
1699                        u32 remaining_length = urb->transfer_buffer_length -
1700                                urb->actual_length;
1701                        struct u132_target *target = &ftdi->target[ed];
1702                        struct u132_command *command = &ftdi->command[
1703                                COMMAND_MASK & ftdi->command_next];
1704                        command->header = 0x83 | (ed << 5);
1705                        if (remaining_length == 0) {
1706                                command->length = 0x0000;
1707                        } else if (remaining_length > 1024) {
1708                                command->length = 0x8000 | 1023;
1709                        } else
1710                                command->length = 0x8000 | (remaining_length -
1711                                                            1);
1712                        command->address = (toggle_bits << 6) | (ep_number << 2)
1713                                | (address << 0);
1714                        command->width = usb_maxpacket(urb->dev, urb->pipe);
1715                        command->follows = 0;
1716                        command->value = 0;
1717                        command->buffer = NULL;
1718                        target->callback = callback;
1719                        target->endp = endp;
1720                        target->urb = urb;
1721                        target->active = 1;
1722                        ftdi->command_next += 1;
1723                        ftdi_elan_kick_command_queue(ftdi);
1724                        mutex_unlock(&ftdi->u132_lock);
1725                        return 0;
1726                } else {
1727                        mutex_unlock(&ftdi->u132_lock);
1728                        msleep(100);
1729                        goto wait;
1730                }
1731        }
1732}
1733
1734int usb_ftdi_elan_edset_single(struct platform_device *pdev, u8 ed_number,
1735                               void *endp, struct urb *urb, u8 address, u8 ep_number, u8 toggle_bits,
1736                               void (*callback) (void *endp, struct urb *urb, u8 *buf, int len,
1737                                                 int toggle_bits, int error_count, int condition_code, int repeat_number,
1738                                                 int halted, int skipped, int actual, int non_null))
1739{
1740        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1741        return ftdi_elan_edset_single(ftdi, ed_number, endp, urb, address,
1742                                      ep_number, toggle_bits, callback);
1743}
1744
1745
1746EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_single);
1747static int ftdi_elan_edset_flush(struct usb_ftdi *ftdi, u8 ed_number,
1748                                 void *endp)
1749{
1750        u8 ed = ed_number - 1;
1751        if (ftdi->disconnected > 0) {
1752                return -ENODEV;
1753        } else if (ftdi->initialized == 0) {
1754                return -ENODEV;
1755        } else {
1756                struct u132_target *target = &ftdi->target[ed];
1757                mutex_lock(&ftdi->u132_lock);
1758                if (target->abandoning > 0) {
1759                        mutex_unlock(&ftdi->u132_lock);
1760                        return 0;
1761                } else {
1762                        target->abandoning = 1;
1763                wait_1:if (target->active == 1) {
1764                                int command_size = ftdi->command_next -
1765                                        ftdi->command_head;
1766                                if (command_size < COMMAND_SIZE) {
1767                                        struct u132_command *command =
1768                                                &ftdi->command[COMMAND_MASK &
1769                                                               ftdi->command_next];
1770                                        command->header = 0x80 | (ed << 5) |
1771                                                0x4;
1772                                        command->length = 0x00;
1773                                        command->address = 0x00;
1774                                        command->width = 0x00;
1775                                        command->follows = 0;
1776                                        command->value = 0;
1777                                        command->buffer = &command->value;
1778                                        ftdi->command_next += 1;
1779                                        ftdi_elan_kick_command_queue(ftdi);
1780                                } else {
1781                                        mutex_unlock(&ftdi->u132_lock);
1782                                        msleep(100);
1783                                        mutex_lock(&ftdi->u132_lock);
1784                                        goto wait_1;
1785                                }
1786                        }
1787                        mutex_unlock(&ftdi->u132_lock);
1788                        return 0;
1789                }
1790        }
1791}
1792
1793int usb_ftdi_elan_edset_flush(struct platform_device *pdev, u8 ed_number,
1794                              void *endp)
1795{
1796        struct usb_ftdi *ftdi = platform_device_to_usb_ftdi(pdev);
1797        return ftdi_elan_edset_flush(ftdi, ed_number, endp);
1798}
1799
1800
1801EXPORT_SYMBOL_GPL(usb_ftdi_elan_edset_flush);
1802static int ftdi_elan_flush_input_fifo(struct usb_ftdi *ftdi)
1803{
1804        int retry_on_empty = 10;
1805        int retry_on_timeout = 5;
1806        int retry_on_status = 20;
1807more:{
1808                int packet_bytes = 0;
1809                int retval = usb_bulk_msg(ftdi->udev,
1810                                          usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
1811                                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
1812                                          &packet_bytes, 100);
1813                if (packet_bytes > 2) {
1814                        char diag[30 *3 + 4];
1815                        char *d = diag;
1816                        int m = (sizeof(diag) - 1) / 3 - 1;
1817                        char *b = ftdi->bulk_in_buffer;
1818                        int bytes_read = 0;
1819                        diag[0] = 0;
1820                        while (packet_bytes-- > 0) {
1821                                char c = *b++;
1822                                if (bytes_read < m) {
1823                                        d += sprintf(d, " %02X",
1824                                                     0x000000FF & c);
1825                                } else if (bytes_read > m) {
1826                                } else
1827                                        d += sprintf(d, " ..");
1828                                bytes_read += 1;
1829                                continue;
1830                        }
1831                        goto more;
1832                } else if (packet_bytes > 1) {
1833                        char s1 = ftdi->bulk_in_buffer[0];
1834                        char s2 = ftdi->bulk_in_buffer[1];
1835                        if (s1 == 0x31 && s2 == 0x60) {
1836                                return 0;
1837                        } else if (retry_on_status-- > 0) {
1838                                goto more;
1839                        } else {
1840                                dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
1841                                return -EFAULT;
1842                        }
1843                } else if (packet_bytes > 0) {
1844                        char b1 = ftdi->bulk_in_buffer[0];
1845                        dev_err(&ftdi->udev->dev, "only one byte flushed from FTDI = %02X\n",
1846                                b1);
1847                        if (retry_on_status-- > 0) {
1848                                goto more;
1849                        } else {
1850                                dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
1851                                return -EFAULT;
1852                        }
1853                } else if (retval == -ETIMEDOUT) {
1854                        if (retry_on_timeout-- > 0) {
1855                                goto more;
1856                        } else {
1857                                dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
1858                                return -ENOMEM;
1859                        }
1860                } else if (retval == 0) {
1861                        if (retry_on_empty-- > 0) {
1862                                goto more;
1863                        } else {
1864                                dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
1865                                return -ENOMEM;
1866                        }
1867                } else {
1868                        dev_err(&ftdi->udev->dev, "error = %d\n", retval);
1869                        return retval;
1870                }
1871        }
1872        return -1;
1873}
1874
1875
1876/*
1877 * send the long flush sequence
1878 *
1879 */
1880static int ftdi_elan_synchronize_flush(struct usb_ftdi *ftdi)
1881{
1882        int retval;
1883        struct urb *urb;
1884        char *buf;
1885        int I = 257;
1886        int i = 0;
1887        urb = usb_alloc_urb(0, GFP_KERNEL);
1888        if (!urb)
1889                return -ENOMEM;
1890        buf = usb_alloc_coherent(ftdi->udev, I, GFP_KERNEL, &urb->transfer_dma);
1891        if (!buf) {
1892                dev_err(&ftdi->udev->dev, "could not get a buffer for flush sequence\n");
1893                usb_free_urb(urb);
1894                return -ENOMEM;
1895        }
1896        while (I-- > 0)
1897                buf[i++] = 0x55;
1898        usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1899                                                           ftdi->bulk_out_endpointAddr), buf, i,
1900                          ftdi_elan_write_bulk_callback, ftdi);
1901        urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1902        retval = usb_submit_urb(urb, GFP_KERNEL);
1903        if (retval) {
1904                dev_err(&ftdi->udev->dev, "failed to submit urb containing the flush sequence\n");
1905                usb_free_coherent(ftdi->udev, i, buf, urb->transfer_dma);
1906                usb_free_urb(urb);
1907                return -ENOMEM;
1908        }
1909        usb_free_urb(urb);
1910        return 0;
1911}
1912
1913
1914/*
1915 * send the reset sequence
1916 *
1917 */
1918static int ftdi_elan_synchronize_reset(struct usb_ftdi *ftdi)
1919{
1920        int retval;
1921        struct urb *urb;
1922        char *buf;
1923        int I = 4;
1924        int i = 0;
1925        urb = usb_alloc_urb(0, GFP_KERNEL);
1926        if (!urb)
1927                return -ENOMEM;
1928        buf = usb_alloc_coherent(ftdi->udev, I, GFP_KERNEL, &urb->transfer_dma);
1929        if (!buf) {
1930                dev_err(&ftdi->udev->dev, "could not get a buffer for the reset sequence\n");
1931                usb_free_urb(urb);
1932                return -ENOMEM;
1933        }
1934        buf[i++] = 0x55;
1935        buf[i++] = 0xAA;
1936        buf[i++] = 0x5A;
1937        buf[i++] = 0xA5;
1938        usb_fill_bulk_urb(urb, ftdi->udev, usb_sndbulkpipe(ftdi->udev,
1939                                                           ftdi->bulk_out_endpointAddr), buf, i,
1940                          ftdi_elan_write_bulk_callback, ftdi);
1941        urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
1942        retval = usb_submit_urb(urb, GFP_KERNEL);
1943        if (retval) {
1944                dev_err(&ftdi->udev->dev, "failed to submit urb containing the reset sequence\n");
1945                usb_free_coherent(ftdi->udev, i, buf, urb->transfer_dma);
1946                usb_free_urb(urb);
1947                return -ENOMEM;
1948        }
1949        usb_free_urb(urb);
1950        return 0;
1951}
1952
1953static int ftdi_elan_synchronize(struct usb_ftdi *ftdi)
1954{
1955        int retval;
1956        int long_stop = 10;
1957        int retry_on_timeout = 5;
1958        int retry_on_empty = 10;
1959        int err_count = 0;
1960        retval = ftdi_elan_flush_input_fifo(ftdi);
1961        if (retval)
1962                return retval;
1963        ftdi->bulk_in_left = 0;
1964        ftdi->bulk_in_last = -1;
1965        while (long_stop-- > 0) {
1966                int read_stop;
1967                int read_stuck;
1968                retval = ftdi_elan_synchronize_flush(ftdi);
1969                if (retval)
1970                        return retval;
1971                retval = ftdi_elan_flush_input_fifo(ftdi);
1972                if (retval)
1973                        return retval;
1974        reset:retval = ftdi_elan_synchronize_reset(ftdi);
1975                if (retval)
1976                        return retval;
1977                read_stop = 100;
1978                read_stuck = 10;
1979        read:{
1980                        int packet_bytes = 0;
1981                        retval = usb_bulk_msg(ftdi->udev,
1982                                              usb_rcvbulkpipe(ftdi->udev,
1983                                                              ftdi->bulk_in_endpointAddr),
1984                                              ftdi->bulk_in_buffer, ftdi->bulk_in_size,
1985                                              &packet_bytes, 500);
1986                        if (packet_bytes > 2) {
1987                                char diag[30 *3 + 4];
1988                                char *d = diag;
1989                                int m = (sizeof(diag) - 1) / 3 - 1;
1990                                char *b = ftdi->bulk_in_buffer;
1991                                int bytes_read = 0;
1992                                unsigned char c = 0;
1993                                diag[0] = 0;
1994                                while (packet_bytes-- > 0) {
1995                                        c = *b++;
1996                                        if (bytes_read < m) {
1997                                                d += sprintf(d, " %02X", c);
1998                                        } else if (bytes_read > m) {
1999                                        } else
2000                                                d += sprintf(d, " ..");
2001                                        bytes_read += 1;
2002                                        continue;
2003                                }
2004                                if (c == 0x7E) {
2005                                        return 0;
2006                                } else {
2007                                        if (c == 0x55) {
2008                                                goto read;
2009                                        } else if (read_stop-- > 0) {
2010                                                goto read;
2011                                        } else {
2012                                                dev_err(&ftdi->udev->dev, "retry limit reached\n");
2013                                                continue;
2014                                        }
2015                                }
2016                        } else if (packet_bytes > 1) {
2017                                unsigned char s1 = ftdi->bulk_in_buffer[0];
2018                                unsigned char s2 = ftdi->bulk_in_buffer[1];
2019                                if (s1 == 0x31 && s2 == 0x00) {
2020                                        if (read_stuck-- > 0) {
2021                                                goto read;
2022                                        } else
2023                                                goto reset;
2024                                } else {
2025                                        if (read_stop-- > 0) {
2026                                                goto read;
2027                                        } else {
2028                                                dev_err(&ftdi->udev->dev, "retry limit reached\n");
2029                                                continue;
2030                                        }
2031                                }
2032                        } else if (packet_bytes > 0) {
2033                                if (read_stop-- > 0) {
2034                                        goto read;
2035                                } else {
2036                                        dev_err(&ftdi->udev->dev, "retry limit reached\n");
2037                                        continue;
2038                                }
2039                        } else if (retval == -ETIMEDOUT) {
2040                                if (retry_on_timeout-- > 0) {
2041                                        goto read;
2042                                } else {
2043                                        dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
2044                                        continue;
2045                                }
2046                        } else if (retval == 0) {
2047                                if (retry_on_empty-- > 0) {
2048                                        goto read;
2049                                } else {
2050                                        dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
2051                                        continue;
2052                                }
2053                        } else {
2054                                err_count += 1;
2055                                dev_err(&ftdi->udev->dev, "error = %d\n",
2056                                        retval);
2057                                if (read_stop-- > 0) {
2058                                        goto read;
2059                                } else {
2060                                        dev_err(&ftdi->udev->dev, "retry limit reached\n");
2061                                        continue;
2062                                }
2063                        }
2064                }
2065        }
2066        dev_err(&ftdi->udev->dev, "failed to synchronize\n");
2067        return -EFAULT;
2068}
2069
2070static int ftdi_elan_stuck_waiting(struct usb_ftdi *ftdi)
2071{
2072        int retry_on_empty = 10;
2073        int retry_on_timeout = 5;
2074        int retry_on_status = 50;
2075more:{
2076                int packet_bytes = 0;
2077                int retval = usb_bulk_msg(ftdi->udev,
2078                                          usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
2079                                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
2080                                          &packet_bytes, 1000);
2081                if (packet_bytes > 2) {
2082                        char diag[30 *3 + 4];
2083                        char *d = diag;
2084                        int m = (sizeof(diag) - 1) / 3 - 1;
2085                        char *b = ftdi->bulk_in_buffer;
2086                        int bytes_read = 0;
2087                        diag[0] = 0;
2088                        while (packet_bytes-- > 0) {
2089                                char c = *b++;
2090                                if (bytes_read < m) {
2091                                        d += sprintf(d, " %02X",
2092                                                     0x000000FF & c);
2093                                } else if (bytes_read > m) {
2094                                } else
2095                                        d += sprintf(d, " ..");
2096                                bytes_read += 1;
2097                        }
2098                        goto more;
2099                } else if (packet_bytes > 1) {
2100                        char s1 = ftdi->bulk_in_buffer[0];
2101                        char s2 = ftdi->bulk_in_buffer[1];
2102                        if (s1 == 0x31 && s2 == 0x60) {
2103                                return 0;
2104                        } else if (retry_on_status-- > 0) {
2105                                msleep(5);
2106                                goto more;
2107                        } else
2108                                return -EFAULT;
2109                } else if (packet_bytes > 0) {
2110                        char b1 = ftdi->bulk_in_buffer[0];
2111                        dev_err(&ftdi->udev->dev, "only one byte flushed from FTDI = %02X\n", b1);
2112                        if (retry_on_status-- > 0) {
2113                                msleep(5);
2114                                goto more;
2115                        } else {
2116                                dev_err(&ftdi->udev->dev, "STATUS ERROR retry limit reached\n");
2117                                return -EFAULT;
2118                        }
2119                } else if (retval == -ETIMEDOUT) {
2120                        if (retry_on_timeout-- > 0) {
2121                                goto more;
2122                        } else {
2123                                dev_err(&ftdi->udev->dev, "TIMED OUT retry limit reached\n");
2124                                return -ENOMEM;
2125                        }
2126                } else if (retval == 0) {
2127                        if (retry_on_empty-- > 0) {
2128                                goto more;
2129                        } else {
2130                                dev_err(&ftdi->udev->dev, "empty packet retry limit reached\n");
2131                                return -ENOMEM;
2132                        }
2133                } else {
2134                        dev_err(&ftdi->udev->dev, "error = %d\n", retval);
2135                        return -ENOMEM;
2136                }
2137        }
2138        return -1;
2139}
2140
2141static int ftdi_elan_checkingPCI(struct usb_ftdi *ftdi)
2142{
2143        int UxxxStatus = ftdi_elan_read_reg(ftdi, &ftdi->controlreg);
2144        if (UxxxStatus)
2145                return UxxxStatus;
2146        if (ftdi->controlreg & 0x00400000) {
2147                if (ftdi->card_ejected) {
2148                } else {
2149                        ftdi->card_ejected = 1;
2150                        dev_err(&ftdi->udev->dev, "CARD EJECTED - controlreg = %08X\n",
2151                                ftdi->controlreg);
2152                }
2153                return -ENODEV;
2154        } else {
2155                u8 fn = ftdi->function - 1;
2156                int activePCIfn = fn << 8;
2157                u32 pcidata;
2158                u32 pciVID;
2159                u32 pciPID;
2160                int reg = 0;
2161                UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2162                                                   &pcidata);
2163                if (UxxxStatus)
2164                        return UxxxStatus;
2165                pciVID = pcidata & 0xFFFF;
2166                pciPID = (pcidata >> 16) & 0xFFFF;
2167                if (pciVID == ftdi->platform_data.vendor && pciPID ==
2168                    ftdi->platform_data.device) {
2169                        return 0;
2170                } else {
2171                        dev_err(&ftdi->udev->dev, "vendor=%04X pciVID=%04X device=%04X pciPID=%04X\n",
2172                                ftdi->platform_data.vendor, pciVID,
2173                                ftdi->platform_data.device, pciPID);
2174                        return -ENODEV;
2175                }
2176        }
2177}
2178
2179
2180#define ftdi_read_pcimem(ftdi, member, data) ftdi_elan_read_pcimem(ftdi, \
2181                                                                   offsetof(struct ohci_regs, member), 0, data);
2182#define ftdi_write_pcimem(ftdi, member, data) ftdi_elan_write_pcimem(ftdi, \
2183                                                                     offsetof(struct ohci_regs, member), 0, data);
2184
2185#define OHCI_CONTROL_INIT OHCI_CTRL_CBSR
2186#define OHCI_INTR_INIT (OHCI_INTR_MIE | OHCI_INTR_UE | OHCI_INTR_RD |   \
2187                        OHCI_INTR_WDH)
2188static int ftdi_elan_check_controller(struct usb_ftdi *ftdi, int quirk)
2189{
2190        int devices = 0;
2191        int retval;
2192        u32 hc_control;
2193        int num_ports;
2194        u32 control;
2195        u32 rh_a = -1;
2196        u32 status;
2197        u32 fminterval;
2198        u32 hc_fminterval;
2199        u32 periodicstart;
2200        u32 cmdstatus;
2201        u32 roothub_a;
2202        int mask = OHCI_INTR_INIT;
2203        int sleep_time = 0;
2204        int reset_timeout = 30;        /* ... allow extra time */
2205        int temp;
2206        retval = ftdi_write_pcimem(ftdi, intrdisable, OHCI_INTR_MIE);
2207        if (retval)
2208                return retval;
2209        retval = ftdi_read_pcimem(ftdi, control, &control);
2210        if (retval)
2211                return retval;
2212        retval = ftdi_read_pcimem(ftdi, roothub.a, &rh_a);
2213        if (retval)
2214                return retval;
2215        num_ports = rh_a & RH_A_NDP;
2216        retval = ftdi_read_pcimem(ftdi, fminterval, &hc_fminterval);
2217        if (retval)
2218                return retval;
2219        hc_fminterval &= 0x3fff;
2220        if (hc_fminterval != FI) {
2221        }
2222        hc_fminterval |= FSMP(hc_fminterval) << 16;
2223        retval = ftdi_read_pcimem(ftdi, control, &hc_control);
2224        if (retval)
2225                return retval;
2226        switch (hc_control & OHCI_CTRL_HCFS) {
2227        case OHCI_USB_OPER:
2228                sleep_time = 0;
2229                break;
2230        case OHCI_USB_SUSPEND:
2231        case OHCI_USB_RESUME:
2232                hc_control &= OHCI_CTRL_RWC;
2233                hc_control |= OHCI_USB_RESUME;
2234                sleep_time = 10;
2235                break;
2236        default:
2237                hc_control &= OHCI_CTRL_RWC;
2238                hc_control |= OHCI_USB_RESET;
2239                sleep_time = 50;
2240                break;
2241        }
2242        retval = ftdi_write_pcimem(ftdi, control, hc_control);
2243        if (retval)
2244                return retval;
2245        retval = ftdi_read_pcimem(ftdi, control, &control);
2246        if (retval)
2247                return retval;
2248        msleep(sleep_time);
2249        retval = ftdi_read_pcimem(ftdi, roothub.a, &roothub_a);
2250        if (retval)
2251                return retval;
2252        if (!(roothub_a & RH_A_NPS)) {        /* power down each port */
2253                for (temp = 0; temp < num_ports; temp++) {
2254                        retval = ftdi_write_pcimem(ftdi,
2255                                                   roothub.portstatus[temp], RH_PS_LSDA);
2256                        if (retval)
2257                                return retval;
2258                }
2259        }
2260        retval = ftdi_read_pcimem(ftdi, control, &control);
2261        if (retval)
2262                return retval;
2263retry:retval = ftdi_read_pcimem(ftdi, cmdstatus, &status);
2264        if (retval)
2265                return retval;
2266        retval = ftdi_write_pcimem(ftdi, cmdstatus, OHCI_HCR);
2267        if (retval)
2268                return retval;
2269extra:{
2270                retval = ftdi_read_pcimem(ftdi, cmdstatus, &status);
2271                if (retval)
2272                        return retval;
2273                if (0 != (status & OHCI_HCR)) {
2274                        if (--reset_timeout == 0) {
2275                                dev_err(&ftdi->udev->dev, "USB HC reset timed out!\n");
2276                                return -ENODEV;
2277                        } else {
2278                                msleep(5);
2279                                goto extra;
2280                        }
2281                }
2282        }
2283        if (quirk & OHCI_QUIRK_INITRESET) {
2284                retval = ftdi_write_pcimem(ftdi, control, hc_control);
2285                if (retval)
2286                        return retval;
2287                retval = ftdi_read_pcimem(ftdi, control, &control);
2288                if (retval)
2289                        return retval;
2290        }
2291        retval = ftdi_write_pcimem(ftdi, ed_controlhead, 0x00000000);
2292        if (retval)
2293                return retval;
2294        retval = ftdi_write_pcimem(ftdi, ed_bulkhead, 0x11000000);
2295        if (retval)
2296                return retval;
2297        retval = ftdi_write_pcimem(ftdi, hcca, 0x00000000);
2298        if (retval)
2299                return retval;
2300        retval = ftdi_read_pcimem(ftdi, fminterval, &fminterval);
2301        if (retval)
2302                return retval;
2303        retval = ftdi_write_pcimem(ftdi, fminterval,
2304                                   ((fminterval & FIT) ^ FIT) | hc_fminterval);
2305        if (retval)
2306                return retval;
2307        retval = ftdi_write_pcimem(ftdi, periodicstart,
2308                                   ((9 *hc_fminterval) / 10) & 0x3fff);
2309        if (retval)
2310                return retval;
2311        retval = ftdi_read_pcimem(ftdi, fminterval, &fminterval);
2312        if (retval)
2313                return retval;
2314        retval = ftdi_read_pcimem(ftdi, periodicstart, &periodicstart);
2315        if (retval)
2316                return retval;
2317        if (0 == (fminterval & 0x3fff0000) || 0 == periodicstart) {
2318                if (!(quirk & OHCI_QUIRK_INITRESET)) {
2319                        quirk |= OHCI_QUIRK_INITRESET;
2320                        goto retry;
2321                } else
2322                        dev_err(&ftdi->udev->dev, "init err(%08x %04x)\n",
2323                                fminterval, periodicstart);
2324        }                        /* start controller operations */
2325        hc_control &= OHCI_CTRL_RWC;
2326        hc_control |= OHCI_CONTROL_INIT | OHCI_CTRL_BLE | OHCI_USB_OPER;
2327        retval = ftdi_write_pcimem(ftdi, control, hc_control);
2328        if (retval)
2329                return retval;
2330        retval = ftdi_write_pcimem(ftdi, cmdstatus, OHCI_BLF);
2331        if (retval)
2332                return retval;
2333        retval = ftdi_read_pcimem(ftdi, cmdstatus, &cmdstatus);
2334        if (retval)
2335                return retval;
2336        retval = ftdi_read_pcimem(ftdi, control, &control);
2337        if (retval)
2338                return retval;
2339        retval = ftdi_write_pcimem(ftdi, roothub.status, RH_HS_DRWE);
2340        if (retval)
2341                return retval;
2342        retval = ftdi_write_pcimem(ftdi, intrstatus, mask);
2343        if (retval)
2344                return retval;
2345        retval = ftdi_write_pcimem(ftdi, intrdisable,
2346                                   OHCI_INTR_MIE | OHCI_INTR_OC | OHCI_INTR_RHSC | OHCI_INTR_FNO |
2347                                   OHCI_INTR_UE | OHCI_INTR_RD | OHCI_INTR_SF | OHCI_INTR_WDH |
2348                                   OHCI_INTR_SO);
2349        if (retval)
2350                return retval;        /* handle root hub init quirks ... */
2351        retval = ftdi_read_pcimem(ftdi, roothub.a, &roothub_a);
2352        if (retval)
2353                return retval;
2354        roothub_a &= ~(RH_A_PSM | RH_A_OCPM);
2355        if (quirk & OHCI_QUIRK_SUPERIO) {
2356                roothub_a |= RH_A_NOCP;
2357                roothub_a &= ~(RH_A_POTPGT | RH_A_NPS);
2358                retval = ftdi_write_pcimem(ftdi, roothub.a, roothub_a);
2359                if (retval)
2360                        return retval;
2361        } else if ((quirk & OHCI_QUIRK_AMD756) || distrust_firmware) {
2362                roothub_a |= RH_A_NPS;
2363                retval = ftdi_write_pcimem(ftdi, roothub.a, roothub_a);
2364                if (retval)
2365                        return retval;
2366        }
2367        retval = ftdi_write_pcimem(ftdi, roothub.status, RH_HS_LPSC);
2368        if (retval)
2369                return retval;
2370        retval = ftdi_write_pcimem(ftdi, roothub.b,
2371                                   (roothub_a & RH_A_NPS) ? 0 : RH_B_PPCM);
2372        if (retval)
2373                return retval;
2374        retval = ftdi_read_pcimem(ftdi, control, &control);
2375        if (retval)
2376                return retval;
2377        mdelay((roothub_a >> 23) & 0x1fe);
2378        for (temp = 0; temp < num_ports; temp++) {
2379                u32 portstatus;
2380                retval = ftdi_read_pcimem(ftdi, roothub.portstatus[temp],
2381                                          &portstatus);
2382                if (retval)
2383                        return retval;
2384                if (1 & portstatus)
2385                        devices += 1;
2386        }
2387        return devices;
2388}
2389
2390static int ftdi_elan_setup_controller(struct usb_ftdi *ftdi, int fn)
2391{
2392        u32 latence_timer;
2393        int UxxxStatus;
2394        u32 pcidata;
2395        int reg = 0;
2396        int activePCIfn = fn << 8;
2397        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x2800);
2398        if (UxxxStatus)
2399                return UxxxStatus;
2400        reg = 16;
2401        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2402                                            0xFFFFFFFF);
2403        if (UxxxStatus)
2404                return UxxxStatus;
2405        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2406                                           &pcidata);
2407        if (UxxxStatus)
2408                return UxxxStatus;
2409        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2410                                            0xF0000000);
2411        if (UxxxStatus)
2412                return UxxxStatus;
2413        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2414                                           &pcidata);
2415        if (UxxxStatus)
2416                return UxxxStatus;
2417        reg = 12;
2418        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2419                                           &latence_timer);
2420        if (UxxxStatus)
2421                return UxxxStatus;
2422        latence_timer &= 0xFFFF00FF;
2423        latence_timer |= 0x00001600;
2424        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2425                                            latence_timer);
2426        if (UxxxStatus)
2427                return UxxxStatus;
2428        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2429                                           &pcidata);
2430        if (UxxxStatus)
2431                return UxxxStatus;
2432        reg = 4;
2433        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2434                                            0x06);
2435        if (UxxxStatus)
2436                return UxxxStatus;
2437        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2438                                           &pcidata);
2439        if (UxxxStatus)
2440                return UxxxStatus;
2441        for (reg = 0; reg <= 0x54; reg += 4) {
2442                UxxxStatus = ftdi_elan_read_pcimem(ftdi, reg, 0, &pcidata);
2443                if (UxxxStatus)
2444                        return UxxxStatus;
2445        }
2446        return 0;
2447}
2448
2449static int ftdi_elan_close_controller(struct usb_ftdi *ftdi, int fn)
2450{
2451        u32 latence_timer;
2452        int UxxxStatus;
2453        u32 pcidata;
2454        int reg = 0;
2455        int activePCIfn = fn << 8;
2456        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x2800);
2457        if (UxxxStatus)
2458                return UxxxStatus;
2459        reg = 16;
2460        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2461                                            0xFFFFFFFF);
2462        if (UxxxStatus)
2463                return UxxxStatus;
2464        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2465                                           &pcidata);
2466        if (UxxxStatus)
2467                return UxxxStatus;
2468        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0,
2469                                            0x00000000);
2470        if (UxxxStatus)
2471                return UxxxStatus;
2472        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2473                                           &pcidata);
2474        if (UxxxStatus)
2475                return UxxxStatus;
2476        reg = 12;
2477        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2478                                           &latence_timer);
2479        if (UxxxStatus)
2480                return UxxxStatus;
2481        latence_timer &= 0xFFFF00FF;
2482        latence_timer |= 0x00001600;
2483        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2484                                            latence_timer);
2485        if (UxxxStatus)
2486                return UxxxStatus;
2487        UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2488                                           &pcidata);
2489        if (UxxxStatus)
2490                return UxxxStatus;
2491        reg = 4;
2492        UxxxStatus = ftdi_elan_write_config(ftdi, activePCIfn | reg, 0x00,
2493                                            0x00);
2494        if (UxxxStatus)
2495                return UxxxStatus;
2496        return ftdi_elan_read_config(ftdi, activePCIfn | reg, 0, &pcidata);
2497}
2498
2499static int ftdi_elan_found_controller(struct usb_ftdi *ftdi, int fn, int quirk)
2500{
2501        int result;
2502        int UxxxStatus;
2503        UxxxStatus = ftdi_elan_setup_controller(ftdi, fn);
2504        if (UxxxStatus)
2505                return UxxxStatus;
2506        result = ftdi_elan_check_controller(ftdi, quirk);
2507        UxxxStatus = ftdi_elan_close_controller(ftdi, fn);
2508        if (UxxxStatus)
2509                return UxxxStatus;
2510        return result;
2511}
2512
2513static int ftdi_elan_enumeratePCI(struct usb_ftdi *ftdi)
2514{
2515        u32 controlreg;
2516        u8 sensebits;
2517        int UxxxStatus;
2518        UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2519        if (UxxxStatus)
2520                return UxxxStatus;
2521        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000000L);
2522        if (UxxxStatus)
2523                return UxxxStatus;
2524        msleep(750);
2525        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000200L | 0x100);
2526        if (UxxxStatus)
2527                return UxxxStatus;
2528        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x00000200L | 0x500);
2529        if (UxxxStatus)
2530                return UxxxStatus;
2531        UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2532        if (UxxxStatus)
2533                return UxxxStatus;
2534        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020CL | 0x000);
2535        if (UxxxStatus)
2536                return UxxxStatus;
2537        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020DL | 0x000);
2538        if (UxxxStatus)
2539                return UxxxStatus;
2540        msleep(250);
2541        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000020FL | 0x000);
2542        if (UxxxStatus)
2543                return UxxxStatus;
2544        UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2545        if (UxxxStatus)
2546                return UxxxStatus;
2547        UxxxStatus = ftdi_elan_write_reg(ftdi, 0x0000025FL | 0x800);
2548        if (UxxxStatus)
2549                return UxxxStatus;
2550        UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2551        if (UxxxStatus)
2552                return UxxxStatus;
2553        UxxxStatus = ftdi_elan_read_reg(ftdi, &controlreg);
2554        if (UxxxStatus)
2555                return UxxxStatus;
2556        msleep(1000);
2557        sensebits = (controlreg >> 16) & 0x000F;
2558        if (0x0D == sensebits)
2559                return 0;
2560        else
2561                return - ENXIO;
2562}
2563
2564static int ftdi_elan_setupOHCI(struct usb_ftdi *ftdi)
2565{
2566        int UxxxStatus;
2567        u32 pcidata;
2568        int reg = 0;
2569        u8 fn;
2570        int activePCIfn = 0;
2571        int max_devices = 0;
2572        int controllers = 0;
2573        int unrecognized = 0;
2574        ftdi->function = 0;
2575        for (fn = 0; (fn < 4); fn++) {
2576                u32 pciVID = 0;
2577                u32 pciPID = 0;
2578                int devices = 0;
2579                activePCIfn = fn << 8;
2580                UxxxStatus = ftdi_elan_read_config(ftdi, activePCIfn | reg, 0,
2581                                                   &pcidata);
2582                if (UxxxStatus)
2583                        return UxxxStatus;
2584                pciVID = pcidata & 0xFFFF;
2585                pciPID = (pcidata >> 16) & 0xFFFF;
2586                if ((pciVID == PCI_VENDOR_ID_OPTI) && (pciPID == 0xc861)) {
2587                        devices = ftdi_elan_found_controller(ftdi, fn, 0);
2588                        controllers += 1;
2589                } else if ((pciVID == PCI_VENDOR_ID_NEC) && (pciPID == 0x0035))
2590                {
2591                        devices = ftdi_elan_found_controller(ftdi, fn, 0);
2592                        controllers += 1;
2593                } else if ((pciVID == PCI_VENDOR_ID_AL) && (pciPID == 0x5237)) {
2594                        devices = ftdi_elan_found_controller(ftdi, fn, 0);
2595                        controllers += 1;
2596                } else if ((pciVID == PCI_VENDOR_ID_ATT) && (pciPID == 0x5802))
2597                {
2598                        devices = ftdi_elan_found_controller(ftdi, fn, 0);
2599                        controllers += 1;
2600                } else if (pciVID == PCI_VENDOR_ID_AMD && pciPID == 0x740c) {
2601                        devices = ftdi_elan_found_controller(ftdi, fn,
2602                                                             OHCI_QUIRK_AMD756);
2603                        controllers += 1;
2604                } else if (pciVID == PCI_VENDOR_ID_COMPAQ && pciPID == 0xa0f8) {
2605                        devices = ftdi_elan_found_controller(ftdi, fn,
2606                                                             OHCI_QUIRK_ZFMICRO);
2607                        controllers += 1;
2608                } else if (0 == pcidata) {
2609                } else
2610                        unrecognized += 1;
2611                if (devices > max_devices) {
2612                        max_devices = devices;
2613                        ftdi->function = fn + 1;
2614                        ftdi->platform_data.vendor = pciVID;
2615                        ftdi->platform_data.device = pciPID;
2616                }
2617        }
2618        if (ftdi->function > 0) {
2619                return ftdi_elan_setup_controller(ftdi, ftdi->function - 1);
2620        } else if (controllers > 0) {
2621                return -ENXIO;
2622        } else if (unrecognized > 0) {
2623                return -ENXIO;
2624        } else {
2625                ftdi->enumerated = 0;
2626                return -ENXIO;
2627        }
2628}
2629
2630
2631/*
2632 * we use only the first bulk-in and bulk-out endpoints
2633 */
2634static int ftdi_elan_probe(struct usb_interface *interface,
2635                           const struct usb_device_id *id)
2636{
2637        struct usb_host_interface *iface_desc;
2638        struct usb_endpoint_descriptor *bulk_in, *bulk_out;
2639        int retval;
2640        struct usb_ftdi *ftdi;
2641
2642        ftdi = kzalloc(sizeof(struct usb_ftdi), GFP_KERNEL);
2643        if (!ftdi)
2644                return -ENOMEM;
2645
2646        mutex_lock(&ftdi_module_lock);
2647        list_add_tail(&ftdi->ftdi_list, &ftdi_static_list);
2648        ftdi->sequence_num = ++ftdi_instances;
2649        mutex_unlock(&ftdi_module_lock);
2650        ftdi_elan_init_kref(ftdi);
2651        sema_init(&ftdi->sw_lock, 1);
2652        ftdi->udev = usb_get_dev(interface_to_usbdev(interface));
2653        ftdi->interface = interface;
2654        mutex_init(&ftdi->u132_lock);
2655        ftdi->expected = 4;
2656
2657        iface_desc = interface->cur_altsetting;
2658        retval = usb_find_common_endpoints(iface_desc,
2659                        &bulk_in, &bulk_out, NULL, NULL);
2660        if (retval) {
2661                dev_err(&ftdi->udev->dev, "Could not find both bulk-in and bulk-out endpoints\n");
2662                goto error;
2663        }
2664
2665        ftdi->bulk_in_size = usb_endpoint_maxp(bulk_in);
2666        ftdi->bulk_in_endpointAddr = bulk_in->bEndpointAddress;
2667        ftdi->bulk_in_buffer = kmalloc(ftdi->bulk_in_size, GFP_KERNEL);
2668        if (!ftdi->bulk_in_buffer) {
2669                retval = -ENOMEM;
2670                goto error;
2671        }
2672
2673        ftdi->bulk_out_endpointAddr = bulk_out->bEndpointAddress;
2674
2675        dev_info(&ftdi->udev->dev, "interface %d has I=%02X O=%02X\n",
2676                 iface_desc->desc.bInterfaceNumber, ftdi->bulk_in_endpointAddr,
2677                 ftdi->bulk_out_endpointAddr);
2678        usb_set_intfdata(interface, ftdi);
2679        if (iface_desc->desc.bInterfaceNumber == 0 &&
2680            ftdi->bulk_in_endpointAddr == 0x81 &&
2681            ftdi->bulk_out_endpointAddr == 0x02) {
2682                retval = usb_register_dev(interface, &ftdi_elan_jtag_class);
2683                if (retval) {
2684                        dev_err(&ftdi->udev->dev, "Not able to get a minor for this device\n");
2685                        usb_set_intfdata(interface, NULL);
2686                        retval = -ENOMEM;
2687                        goto error;
2688                } else {
2689                        ftdi->class = &ftdi_elan_jtag_class;
2690                        dev_info(&ftdi->udev->dev, "USB FDTI=%p JTAG interface %d now attached to ftdi%d\n",
2691                                 ftdi, iface_desc->desc.bInterfaceNumber,
2692                                 interface->minor);
2693                        return 0;
2694                }
2695        } else if (iface_desc->desc.bInterfaceNumber == 1 &&
2696                   ftdi->bulk_in_endpointAddr == 0x83 &&
2697                   ftdi->bulk_out_endpointAddr == 0x04) {
2698                ftdi->class = NULL;
2699                dev_info(&ftdi->udev->dev, "USB FDTI=%p ELAN interface %d now activated\n",
2700                         ftdi, iface_desc->desc.bInterfaceNumber);
2701                INIT_DELAYED_WORK(&ftdi->status_work, ftdi_elan_status_work);
2702                INIT_DELAYED_WORK(&ftdi->command_work, ftdi_elan_command_work);
2703                INIT_DELAYED_WORK(&ftdi->respond_work, ftdi_elan_respond_work);
2704                ftdi_status_queue_work(ftdi, msecs_to_jiffies(3 *1000));
2705                return 0;
2706        } else {
2707                dev_err(&ftdi->udev->dev,
2708                        "Could not find ELAN's U132 device\n");
2709                retval = -ENODEV;
2710                goto error;
2711        }
2712error:if (ftdi) {
2713                ftdi_elan_put_kref(ftdi);
2714        }
2715        return retval;
2716}
2717
2718static void ftdi_elan_disconnect(struct usb_interface *interface)
2719{
2720        struct usb_ftdi *ftdi = usb_get_intfdata(interface);
2721        ftdi->disconnected += 1;
2722        if (ftdi->class) {
2723                int minor = interface->minor;
2724                struct usb_class_driver *class = ftdi->class;
2725                usb_set_intfdata(interface, NULL);
2726                usb_deregister_dev(interface, class);
2727                dev_info(&ftdi->udev->dev, "USB FTDI U132 jtag interface on minor %d now disconnected\n",
2728                         minor);
2729        } else {
2730                ftdi_status_cancel_work(ftdi);
2731                ftdi_command_cancel_work(ftdi);
2732                ftdi_response_cancel_work(ftdi);
2733                ftdi_elan_abandon_completions(ftdi);
2734                ftdi_elan_abandon_targets(ftdi);
2735                if (ftdi->registered) {
2736                        platform_device_unregister(&ftdi->platform_dev);
2737                        ftdi->synchronized = 0;
2738                        ftdi->enumerated = 0;
2739                        ftdi->initialized = 0;
2740                        ftdi->registered = 0;
2741                }
2742                ftdi->disconnected += 1;
2743                usb_set_intfdata(interface, NULL);
2744                dev_info(&ftdi->udev->dev, "USB FTDI U132 host controller interface now disconnected\n");
2745        }
2746        ftdi_elan_put_kref(ftdi);
2747}
2748
2749static struct usb_driver ftdi_elan_driver = {
2750        .name = "ftdi-elan",
2751        .probe = ftdi_elan_probe,
2752        .disconnect = ftdi_elan_disconnect,
2753        .id_table = ftdi_elan_table,
2754};
2755static int __init ftdi_elan_init(void)
2756{
2757        int result;
2758        pr_info("driver %s\n", ftdi_elan_driver.name);
2759        mutex_init(&ftdi_module_lock);
2760        INIT_LIST_HEAD(&ftdi_static_list);
2761        result = usb_register(&ftdi_elan_driver);
2762        if (result) {
2763                pr_err("usb_register failed. Error number %d\n", result);
2764        }
2765        return result;
2766
2767}
2768
2769static void __exit ftdi_elan_exit(void)
2770{
2771        struct usb_ftdi *ftdi;
2772        struct usb_ftdi *temp;
2773        usb_deregister(&ftdi_elan_driver);
2774        pr_info("ftdi_u132 driver deregistered\n");
2775        list_for_each_entry_safe(ftdi, temp, &ftdi_static_list, ftdi_list) {
2776                ftdi_status_cancel_work(ftdi);
2777                ftdi_command_cancel_work(ftdi);
2778                ftdi_response_cancel_work(ftdi);
2779        }
2780}
2781
2782
2783module_init(ftdi_elan_init);
2784module_exit(ftdi_elan_exit);
2785